EuRBPDB

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  • Description
  • RBDs
  • Literatures
  • Expression
  • Transcripts
  • Gene Model
  • Pathways
  • Phenotypes
  • PPI
  • Orthologs
  • Gene Ontology
Description
Ensembl ID
ENSG00000124216 (Gene tree)
Gene ID
6615
Gene Symbol
SNAI1
Alias
SNA|SLUGH2|SNAH|SNAIL1|SNAIL
Full Name
snail family transcriptional repressor 1
Gene Type
protein_coding
Species
Homo_sapiens
Status
confidence
Strand
Plus strand
Length
5,911 bases
Position
chr20:49,982,976-49,988,886
Accession
11128
RBP type
canonical RBP
Summary
The Drosophila embryonic protein snail is a zinc finger transcriptional repressor which downregulates the expression of ectodermal genes within the mesoderm. The nuclear protein encoded by this gene is structurally similar to the Drosophila snail protein, and is also thought to be critical for mesoderm formation in the developing embryo. At least two variants of a similar processed pseudogene have been found on chromosome 2. [provided by RefSeq, Jul 2008]
RNA binding domains(RBDs)
Protein IDDomain Pfam IDE-value Domain number Total number
ENSP00000244050zf-C2H2PF00096.267.2e-1612
ENSP00000244050zf-C2H2PF00096.267.2e-1622
ENSP00000244050zf-metPF12874.75.7e-0611

Literatures on RNA binding capacity
PIDTitleArticle TimeAuthorDoi
31131921Small molecule inhibitors of epithelial-mesenchymal transition for the treatment of cancer and fibrosis.Med Res Rev2019 May 27Feng YLdoi: 10.1002/med.21596
27682981Identification of a Novel Human E-Cadherin Splice Variant and Assessment of Its Effects Upon EMT-Related Events.J Cell Physiol2017 JunMatos MLdoi: 10.1002/jcp.25622
28683467RBM38 is involved in TGF-β-induced epithelial-to-mesenchymal transition by stabilising zonula occludens-1 mRNA in breast cancer.Br J Cancer2017 Aug 22Wu Jdoi: 10.1038/bjc.2017.204
25798844miR-200 promotes the mesenchymal to epithelial transition by suppressing multiple members of the Zeb2 and Snail1 transcriptional repressor complexes.Oncogene2016 Jan 14Perdigao-Henriques Rdoi: 10.1038/onc.2015.69
31068593Ribosome biogenesis during cell cycle arrest fuels EMT in development and disease.Nat Commun2019 May 8Prakash Vdoi: 10.1038/s41467-019-10100-8.
Expression
Transcripts
Transcript IDNameLengthRefSeq ID Protein IDLengthRefSeq IDUniportKB ID
ENST00000244050SNAI1-2011686-ENSP00000244050264 (aa)-O95863
Gene Model
Click here to download ENSG00000124216's gene model file
Pathways
Pathway IDPathway NameSource
hsa04520Adherens junctionKEGG
Phenotypes
ensgIDTraitpValuePubmed ID
ENSG00000124216Tunica Media1.9630000E-005-
ENSG00000124216Psoriasis2E-725903422
ENSG00000124216Psoriasis2E-625903422
Protein-Protein Interaction (PPI)

Clik here to download ENSG00000124216's network

* RBP PPI network refers to all genes directly bind to RBP
Orthologs
Ensembl IDGene SymbolCoverageIdentiy OrthologGene SymbolCoverageIdentiy Species
ENSG00000124216SNAI19948.592ENSAPOG00000016426-9946.809Acanthochromis_polyacanthus
ENSG00000124216SNAI19850.746ENSAPOG00000002867snai1a9849.808Acanthochromis_polyacanthus
ENSG00000124216SNAI19854.074ENSAPOG00000003886snai27853.704Acanthochromis_polyacanthus
ENSG00000124216SNAI110088.258ENSAMEG00000013478SNAI110088.258Ailuropoda_melanoleuca
ENSG00000124216SNAI19850.958ENSACIG00000011318snai1a9849.042Amphilophus_citrinellus
ENSG00000124216SNAI15364.667ENSACIG00000009443-9946.953Amphilophus_citrinellus
ENSG00000124216SNAI19854.982ENSACIG00000018641snai29854.613Amphilophus_citrinellus
ENSG00000124216SNAI19854.444ENSAOCG00000017968snai29854.074Amphiprion_ocellaris
ENSG00000124216SNAI19850.746ENSAOCG00000018003snai1a9850.763Amphiprion_ocellaris
ENSG00000124216SNAI19854.444ENSAPEG00000002983snai29854.074Amphiprion_percula
ENSG00000124216SNAI19850.746ENSAPEG00000024286snai1a9850.763Amphiprion_percula
ENSG00000124216SNAI19949.270ENSAPEG00000007647-9950.000Amphiprion_percula
ENSG00000124216SNAI19948.929ENSATEG00000004944-9947.331Anabas_testudineus
ENSG00000124216SNAI19854.815ENSATEG00000006892snai29854.982Anabas_testudineus
ENSG00000124216SNAI19850.558ENSATEG00000015639snai1a9850.575Anabas_testudineus
ENSG00000124216SNAI18464.414ENSAPLG00000014633-9363.514Anas_platyrhynchos
ENSG00000124216SNAI19852.347ENSAPLG00000003920-9952.536Anas_platyrhynchos
ENSG00000124216SNAI18456.388ENSACAG00000015607SNAI18756.388Anolis_carolinensis
ENSG00000124216SNAI19851.748ENSACAG00000012332-9952.899Anolis_carolinensis
ENSG00000124216SNAI110096.970ENSANAG00000028666SNAI110096.970Aotus_nancymaae
ENSG00000124216SNAI19947.601ENSACLG00000026461-9946.886Astatotilapia_calliptera
ENSG00000124216SNAI19856.371ENSACLG00000018551snai29855.598Astatotilapia_calliptera
ENSG00000124216SNAI19851.852ENSACLG00000020860snai1a9850.370Astatotilapia_calliptera
ENSG00000124216SNAI19855.390ENSAMXG00000038235snai29853.546Astyanax_mexicanus
ENSG00000124216SNAI19950.929ENSAMXG00000039849snai1b9950.746Astyanax_mexicanus
ENSG00000124216SNAI110087.500ENSBTAG00000014554SNAI110087.500Bos_taurus
ENSG00000124216SNAI15350.360WBGene00019299snai-15361.765Caenorhabditis_elegans
ENSG00000124216SNAI110096.591ENSCJAG00000000518SNAI110096.591Callithrix_jacchus
ENSG00000124216SNAI19089.030ENSCAFG00000011499SNAI110089.030Canis_familiaris
ENSG00000124216SNAI110087.121ENSCAFG00020017479SNAI110087.121Canis_lupus_dingo
ENSG00000124216SNAI110087.500ENSCHIG00000014308SNAI110087.500Capra_hircus
ENSG00000124216SNAI110092.803ENSTSYG00000010834SNAI110092.803Carlito_syrichta
ENSG00000124216SNAI19585.714ENSCAPG00000014002SNAI19585.714Cavia_aperea
ENSG00000124216SNAI110090.152ENSCPOG00000026663SNAI110090.152Cavia_porcellus
ENSG00000124216SNAI19851.799ENSCPOG00000033449-9952.347Cavia_porcellus
ENSG00000124216SNAI110097.727ENSCCAG00000029550SNAI110097.727Cebus_capucinus
ENSG00000124216SNAI110098.106ENSCATG00000041452SNAI110098.106Cercocebus_atys
ENSG00000124216SNAI110089.394ENSCLAG00000012285SNAI110089.394Chinchilla_lanigera
ENSG00000124216SNAI110098.106ENSCSAG00000015065SNAI110098.106Chlorocebus_sabaeus
ENSG00000124216SNAI19649.632ENSCHOG00000007046-9850.923Choloepus_hoffmanni
ENSG00000124216SNAI110097.727ENSCANG00000036400SNAI110097.727Colobus_angolensis_palliatus
ENSG00000124216SNAI110087.121ENSCGRG00001007749Snai110087.121Cricetulus_griseus_chok1gshd
ENSG00000124216SNAI110087.121ENSCGRG00000009080Snai110087.121Cricetulus_griseus_crigri
ENSG00000124216SNAI19852.708ENSCSEG00000010311snai29854.779Cynoglossus_semilaevis
ENSG00000124216SNAI19849.091ENSCSEG00000009739snai1a9848.540Cynoglossus_semilaevis
ENSG00000124216SNAI19950.000ENSCVAG00000009930-9950.000Cyprinodon_variegatus
ENSG00000124216SNAI19852.158ENSCVAG00000016483snai29951.590Cyprinodon_variegatus
ENSG00000124216SNAI19849.265ENSCVAG00000008717snai1a9850.000Cyprinodon_variegatus
ENSG00000124216SNAI19951.103ENSDARG00000056995snai1a10051.493Danio_rerio
ENSG00000124216SNAI19950.558ENSDARG00000046019snai1b9949.815Danio_rerio
ENSG00000124216SNAI19855.970ENSDARG00000040046snai29854.104Danio_rerio
ENSG00000124216SNAI19852.158ENSDNOG00000035997-9952.708Dasypus_novemcinctus
ENSG00000124216SNAI110085.606ENSDNOG00000023834-10085.606Dasypus_novemcinctus
ENSG00000124216SNAI19969.811ENSDNOG00000024891-9968.679Dasypus_novemcinctus
ENSG00000124216SNAI19084.167ENSDORG00000025372Snai110084.167Dipodomys_ordii
ENSG00000124216SNAI19848.364ENSETEG00000005777-9949.091Echinops_telfairi
ENSG00000124216SNAI19849.630ENSEBUG00000011515snai1a8248.315Eptatretus_burgeri
ENSG00000124216SNAI19851.799ENSEASG00005009186-9952.347Equus_asinus_asinus
ENSG00000124216SNAI110087.170ENSECAG00000009787SNAI110087.170Equus_caballus
ENSG00000124216SNAI19851.799ENSECAG00000010120SNAI29952.347Equus_caballus
ENSG00000124216SNAI18941.107ENSELUG00000004844snai1a8741.463Esox_lucius
ENSG00000124216SNAI19949.470ENSELUG00000002056SNAI19949.627Esox_lucius
ENSG00000124216SNAI19851.439ENSFCAG00000015779-9951.986Felis_catus
ENSG00000124216SNAI110086.742ENSFCAG00000010558SNAI110086.742Felis_catus
ENSG00000124216SNAI19852.347ENSFALG00000005762-9952.536Ficedula_albicollis
ENSG00000124216SNAI110091.288ENSFDAG00000005851SNAI110091.288Fukomys_damarensis
ENSG00000124216SNAI19849.814ENSFHEG00000018724snai1a9849.808Fundulus_heteroclitus
ENSG00000124216SNAI19853.704ENSFHEG00000012561snai29853.333Fundulus_heteroclitus
ENSG00000124216SNAI19848.188ENSFHEG00000022095-9947.482Fundulus_heteroclitus
ENSG00000124216SNAI19648.031ENSGMOG00000000127-9946.899Gadus_morhua
ENSG00000124216SNAI19649.813ENSGMOG00000017815snai1a9650.943Gadus_morhua
ENSG00000124216SNAI19854.779ENSGMOG00000002669snai29854.412Gadus_morhua
ENSG00000124216SNAI19958.333ENSGALG00000008018SNAI19958.333Gallus_gallus
ENSG00000124216SNAI19850.187ENSGALG00000030902-9851.111Gallus_gallus
ENSG00000124216SNAI19854.613ENSGAFG00000021427snai29854.815Gambusia_affinis
ENSG00000124216SNAI19849.446ENSGAFG00000020143snai1a9850.192Gambusia_affinis
ENSG00000124216SNAI19949.466ENSGAFG00000021126-9948.772Gambusia_affinis
ENSG00000124216SNAI19946.863ENSGACG00000001618-9745.865Gasterosteus_aculeatus
ENSG00000124216SNAI19648.289ENSGACG00000010147snai1a9746.545Gasterosteus_aculeatus
ENSG00000124216SNAI19851.601ENSGACG00000017935snai29853.623Gasterosteus_aculeatus
ENSG00000124216SNAI18460.088ENSGAGG00000022705SNAI18760.177Gopherus_agassizii
ENSG00000124216SNAI110098.864ENSGGOG00000024422SNAI110098.864Gorilla_gorilla
ENSG00000124216SNAI19851.852ENSHBUG00000013491snai1a9850.370Haplochromis_burtoni
ENSG00000124216SNAI19856.371ENSHBUG00000007764snai29855.598Haplochromis_burtoni
ENSG00000124216SNAI19947.601ENSHBUG00000005726-9946.886Haplochromis_burtoni
ENSG00000124216SNAI19851.799ENSHGLG00000009439SNAI29952.347Heterocephalus_glaber_female
ENSG00000124216SNAI110092.045ENSHGLG00000005310SNAI110092.045Heterocephalus_glaber_female
ENSG00000124216SNAI19851.799ENSHGLG00100007484SNAI29952.347Heterocephalus_glaber_male
ENSG00000124216SNAI110092.045ENSHGLG00100018390SNAI110092.045Heterocephalus_glaber_male
ENSG00000124216SNAI19850.000ENSHCOG00000003407snai1a9849.442Hippocampus_comes
ENSG00000124216SNAI19850.368ENSHCOG00000020556-9950.000Hippocampus_comes
ENSG00000124216SNAI19949.818ENSIPUG00000015844snai1b9950.185Ictalurus_punctatus
ENSG00000124216SNAI110090.152ENSSTOG00000005866SNAI110090.152Ictidomys_tridecemlineatus
ENSG00000124216SNAI110085.985ENSJJAG00000017317Snai110088.258Jaculus_jaculus
ENSG00000124216SNAI19851.799ENSJJAG00000017495-9952.347Jaculus_jaculus
ENSG00000124216SNAI19949.275ENSKMAG00000018546-9948.410Kryptolebias_marmoratus
ENSG00000124216SNAI19853.933ENSKMAG00000005164snai29854.613Kryptolebias_marmoratus
ENSG00000124216SNAI19849.451ENSKMAG00000021206snai1a9849.624Kryptolebias_marmoratus
ENSG00000124216SNAI19849.813ENSLBEG00000017605snai1a9849.064Labrus_bergylta
ENSG00000124216SNAI19853.506ENSLBEG00000000972snai29853.875Labrus_bergylta
ENSG00000124216SNAI19948.763ENSLBEG00000006963-9947.101Labrus_bergylta
ENSG00000124216SNAI19851.986ENSLACG00000005413snai29953.480Latimeria_chalumnae
ENSG00000124216SNAI19955.720ENSLACG00000017707SNAI19953.759Latimeria_chalumnae
ENSG00000124216SNAI19852.652ENSLOCG00000004443snai1a9852.692Lepisosteus_oculatus
ENSG00000124216SNAI110085.227ENSLAFG00000030265SNAI110085.227Loxodonta_africana
ENSG00000124216SNAI110098.106ENSMFAG00000000994SNAI110098.106Macaca_fascicularis
ENSG00000124216SNAI110098.485ENSMNEG00000036933SNAI110098.485Macaca_nemestrina
ENSG00000124216SNAI110098.106ENSMLEG00000039236SNAI110098.106Mandrillus_leucophaeus
ENSG00000124216SNAI19854.982ENSMAMG00000015632snai29854.613Mastacembelus_armatus
ENSG00000124216SNAI19849.632ENSMAMG00000020994snai1a9849.446Mastacembelus_armatus
ENSG00000124216SNAI19946.975ENSMAMG00000010384-9946.975Mastacembelus_armatus
ENSG00000124216SNAI19947.601ENSMZEG00005026596-9946.886Maylandia_zebra
ENSG00000124216SNAI19851.852ENSMZEG00005010038snai1a9850.370Maylandia_zebra
ENSG00000124216SNAI19856.371ENSMZEG00005025060snai29855.598Maylandia_zebra
ENSG00000124216SNAI19852.347ENSMGAG00000010813-9952.536Meleagris_gallopavo
ENSG00000124216SNAI19958.712ENSMGAG00000009447SNAI19958.712Meleagris_gallopavo
ENSG00000124216SNAI110087.879ENSMAUG00000021592Snai110087.879Mesocricetus_auratus
ENSG00000124216SNAI19852.555ENSMICG00000000335-9952.708Microcebus_murinus
ENSG00000124216SNAI110093.561ENSMICG00000042228SNAI110093.561Microcebus_murinus
ENSG00000124216SNAI110089.015ENSMOCG00000007847Snai110089.015Microtus_ochrogaster
ENSG00000124216SNAI19849.815ENSMMOG00000019965snai1a9850.000Mola_mola
ENSG00000124216SNAI19949.817ENSMMOG00000020343-9952.174Mola_mola
ENSG00000124216SNAI19850.965ENSMMOG00000016695snai29849.630Mola_mola
ENSG00000124216SNAI19959.470ENSMODG00000016309SNAI19956.489Monodelphis_domestica
ENSG00000124216SNAI19857.143ENSMALG00000021318snai29856.371Monopterus_albus
ENSG00000124216SNAI19850.746ENSMALG00000005785snai1a9849.438Monopterus_albus
ENSG00000124216SNAI19949.097ENSMALG00000001010-9948.339Monopterus_albus
ENSG00000124216SNAI110087.879MGP_CAROLIEiJ_G0024709Snai110087.879Mus_caroli
ENSG00000124216SNAI110087.500ENSMUSG00000042821Snai110087.500Mus_musculus
ENSG00000124216SNAI110087.879MGP_PahariEiJ_G0026151Snai110087.879Mus_pahari
ENSG00000124216SNAI110087.879MGP_SPRETEiJ_G0025629Snai110087.879Mus_spretus
ENSG00000124216SNAI110087.879ENSMPUG00000017558SNAI110087.879Mustela_putorius_furo
ENSG00000124216SNAI19979.924ENSMLUG00000011649-9978.409Myotis_lucifugus
ENSG00000124216SNAI110085.985ENSMLUG00000015053-10085.985Myotis_lucifugus
ENSG00000124216SNAI19851.799ENSNGAG00000009442-9952.555Nannospalax_galili
ENSG00000124216SNAI110089.015ENSNGAG00000017185Snai110089.015Nannospalax_galili
ENSG00000124216SNAI16362.275ENSNBRG00000023091snai1a5075.806Neolamprologus_brichardi
ENSG00000124216SNAI19851.154ENSNBRG00000003394-9749.615Neolamprologus_brichardi
ENSG00000124216SNAI19856.371ENSNBRG00000011785snai29855.598Neolamprologus_brichardi
ENSG00000124216SNAI110098.106ENSNLEG00000006985SNAI110098.106Nomascus_leucogenys
ENSG00000124216SNAI19851.799ENSODEG00000003654-9952.347Octodon_degus
ENSG00000124216SNAI19988.302ENSODEG00000007856SNAI19988.302Octodon_degus
ENSG00000124216SNAI19854.444ENSONIG00000009542snai29854.074Oreochromis_niloticus
ENSG00000124216SNAI19851.111ENSONIG00000020305snai1a9849.630Oreochromis_niloticus
ENSG00000124216SNAI19847.191ENSONIG00000017451-9846.468Oreochromis_niloticus
ENSG00000124216SNAI18660.166ENSOANG00000008681SNAI19159.751Ornithorhynchus_anatinus
ENSG00000124216SNAI19188.285ENSOCUG00000005422SNAI19888.285Oryctolagus_cuniculus
ENSG00000124216SNAI19851.799ENSOCUG00000012254-9952.347Oryctolagus_cuniculus
ENSG00000124216SNAI19853.091ENSORLG00000017475snai29853.704Oryzias_latipes
ENSG00000124216SNAI19850.185ENSORLG00000023047snai1a9850.379Oryzias_latipes
ENSG00000124216SNAI19853.585ENSORLG00020008787snai29853.704Oryzias_latipes_hni
ENSG00000124216SNAI19850.373ENSORLG00020019789snai1a9850.575Oryzias_latipes_hni
ENSG00000124216SNAI19850.185ENSORLG00015015416snai1a9850.379Oryzias_latipes_hsok
ENSG00000124216SNAI19853.091ENSORLG00015008609snai29853.704Oryzias_latipes_hsok
ENSG00000124216SNAI19849.815ENSOMEG00000023773snai1a9850.379Oryzias_melastigma
ENSG00000124216SNAI19854.340ENSOMEG00000006591snai29853.962Oryzias_melastigma
ENSG00000124216SNAI19851.799ENSOGAG00000010500-9952.347Otolemur_garnettii
ENSG00000124216SNAI110094.697ENSOGAG00000030111SNAI110094.697Otolemur_garnettii
ENSG00000124216SNAI19484.615ENSOARG00000013174SNAI17187.045Ovis_aries
ENSG00000124216SNAI110098.485ENSPPAG00000041096SNAI110098.485Pan_paniscus
ENSG00000124216SNAI110086.742ENSPPRG00000013272SNAI110086.742Panthera_pardus
ENSG00000124216SNAI110098.485ENSPTRG00000050285SNAI110098.485Pan_troglodytes
ENSG00000124216SNAI110098.106ENSPANG00000007536SNAI110098.106Papio_anubis
ENSG00000124216SNAI19950.758ENSPKIG00000006393snai1a9951.661Paramormyrops_kingsleyae
ENSG00000124216SNAI19957.993ENSPSIG00000003607SNAI19957.678Pelodiscus_sinensis
ENSG00000124216SNAI19848.315ENSPMGG00000023198snai1a9848.276Periophthalmus_magnuspinnatus
ENSG00000124216SNAI19849.813ENSPMGG00000006947-9847.015Periophthalmus_magnuspinnatus
ENSG00000124216SNAI110088.636ENSPEMG00000023213Snai110088.636Peromyscus_maniculatus_bairdii
ENSG00000124216SNAI19960.150ENSPCIG00000023282SNAI19956.870Phascolarctos_cinereus
ENSG00000124216SNAI19951.128ENSPFOG00000008667-9949.248Poecilia_formosa
ENSG00000124216SNAI19853.704ENSPFOG00000014336snai29854.444Poecilia_formosa
ENSG00000124216SNAI19851.301ENSPFOG00000015709snai1a9851.527Poecilia_formosa
ENSG00000124216SNAI19854.074ENSPLAG00000009941snai29854.815Poecilia_latipinna
ENSG00000124216SNAI18350.870ENSPLAG00000011169snai1a5373.846Poecilia_latipinna
ENSG00000124216SNAI19950.545ENSPLAG00000010605-9948.375Poecilia_latipinna
ENSG00000124216SNAI19849.077ENSPMEG00000017260snai1a9849.808Poecilia_mexicana
ENSG00000124216SNAI19950.545ENSPMEG00000007205-9949.458Poecilia_mexicana
ENSG00000124216SNAI19853.704ENSPMEG00000024022snai29854.444Poecilia_mexicana
ENSG00000124216SNAI19849.446ENSPREG00000022303snai1a9850.192Poecilia_reticulata
ENSG00000124216SNAI110097.727ENSPPYG00000011122SNAI110097.727Pongo_abelii
ENSG00000124216SNAI18987.288ENSPCAG00000011934SNAI19987.288Procavia_capensis
ENSG00000124216SNAI19851.049ENSPCAG00000001788-9850.000Procavia_capensis
ENSG00000124216SNAI110094.318ENSPCOG00000020538SNAI110094.318Propithecus_coquereli
ENSG00000124216SNAI110086.090ENSPVAG00000004119SNAI110086.090Pteropus_vampyrus
ENSG00000124216SNAI19856.371ENSPNYG00000015217snai29855.598Pundamilia_nyererei
ENSG00000124216SNAI19851.852ENSPNYG00000018944snai1a9850.370Pundamilia_nyererei
ENSG00000124216SNAI19946.863ENSPNYG00000001207-9946.154Pundamilia_nyererei
ENSG00000124216SNAI19854.779ENSPNAG00000015896snai29853.992Pygocentrus_nattereri
ENSG00000124216SNAI19952.416ENSPNAG00000024123snai1b9951.866Pygocentrus_nattereri
ENSG00000124216SNAI19852.448ENSRNOG00000047699Snai29952.708Rattus_norvegicus
ENSG00000124216SNAI110089.015ENSRNOG00000009594Snai110089.015Rattus_norvegicus
ENSG00000124216SNAI110098.106ENSRBIG00000026992SNAI110098.106Rhinopithecus_bieti
ENSG00000124216SNAI110098.106ENSRROG00000043753SNAI110098.106Rhinopithecus_roxellana
ENSG00000124216SNAI110096.604ENSSBOG00000034760SNAI110096.604Saimiri_boliviensis_boliviensis
ENSG00000124216SNAI19960.526ENSSHAG00000011015SNAI19957.252Sarcophilus_harrisii
ENSG00000124216SNAI19952.222ENSSFOG00015021578snai1a9951.481Scleropages_formosus
ENSG00000124216SNAI19850.746ENSSMAG00000013652snai1a9850.575Scophthalmus_maximus
ENSG00000124216SNAI19852.536ENSSMAG00000019364snai29854.244Scophthalmus_maximus
ENSG00000124216SNAI16561.582ENSSMAG00000008834-9946.643Scophthalmus_maximus
ENSG00000124216SNAI19949.110ENSSDUG00000017250-9948.000Seriola_dumerili
ENSG00000124216SNAI19850.373ENSSDUG00000019933snai1a9849.064Seriola_dumerili
ENSG00000124216SNAI19855.351ENSSDUG00000018060snai29854.444Seriola_dumerili
ENSG00000124216SNAI19856.923ENSSLDG00000012852snai29856.154Seriola_lalandi_dorsalis
ENSG00000124216SNAI19949.466ENSSLDG00000025359-9948.364Seriola_lalandi_dorsalis
ENSG00000124216SNAI19850.373ENSSLDG00000011412snai1a9849.064Seriola_lalandi_dorsalis
ENSG00000124216SNAI19955.056ENSSPUG00000018057SNAI19952.632Sphenodon_punctatus
ENSG00000124216SNAI19854.444ENSSPAG00000022061snai29854.074Stegastes_partitus
ENSG00000124216SNAI19850.000ENSSPAG00000001874snai1a9849.618Stegastes_partitus
ENSG00000124216SNAI19949.104ENSSPAG00000001098-9947.163Stegastes_partitus
ENSG00000124216SNAI110089.015ENSSSCG00000032613SNAI110089.015Sus_scrofa
ENSG00000124216SNAI19852.347ENSTGUG00000010914-9952.536Taeniopygia_guttata
ENSG00000124216SNAI19957.471ENSTGUG00000008724SNAI19957.471Taeniopygia_guttata
ENSG00000124216SNAI19950.000ENSTRUG00000000419sna29949.813Takifugu_rubripes
ENSG00000124216SNAI19850.373ENSTRUG00000022990sna19849.254Takifugu_rubripes
ENSG00000124216SNAI19854.244ENSTRUG00000025588snai29854.815Takifugu_rubripes
ENSG00000124216SNAI19950.000ENSTNIG00000003865-9949.077Tetraodon_nigroviridis
ENSG00000124216SNAI19850.000ENSTNIG00000007311snai1a9850.379Tetraodon_nigroviridis
ENSG00000124216SNAI19853.455ENSTNIG00000008504snai29854.444Tetraodon_nigroviridis
ENSG00000124216SNAI17386.010ENSTBEG00000012262SNAI19984.456Tupaia_belangeri
ENSG00000124216SNAI110088.258ENSTTRG00000002029SNAI110088.258Tursiops_truncatus
ENSG00000124216SNAI110082.197ENSUAMG00000026603SNAI110083.333Ursus_americanus
ENSG00000124216SNAI18989.831ENSUMAG00000024458SNAI19689.831Ursus_maritimus
ENSG00000124216SNAI110087.121ENSVVUG00000022410SNAI110087.121Vulpes_vulpes
ENSG00000124216SNAI19956.985ENSXETG00000027366snai19954.815Xenopus_tropicalis
ENSG00000124216SNAI19854.074ENSXCOG00000015084snai29854.815Xiphophorus_couchianus
ENSG00000124216SNAI19849.815ENSXCOG00000017528snai1a9850.575Xiphophorus_couchianus
ENSG00000124216SNAI19949.821ENSXMAG00000015281-9947.872Xiphophorus_maculatus
ENSG00000124216SNAI19849.815ENSXMAG00000027735snai1a9850.575Xiphophorus_maculatus
ENSG00000124216SNAI19853.704ENSXMAG00000019030snai29854.444Xiphophorus_maculatus
Gene Ontology
Go IDGo_termPubmedIDEvidenceCategory
GO:0000122negative regulation of transcription by RNA polymerase II11912130.IDAProcess
GO:0000122negative regulation of transcription by RNA polymerase II15314165.IMPProcess
GO:0000122negative regulation of transcription by RNA polymerase II-ISSProcess
GO:0000977RNA polymerase II regulatory region sequence-specific DNA binding11912130.IDAFunction
GO:0000981DNA-binding transcription factor activity, RNA polymerase II-specific-ISAFunction
GO:0000981DNA-binding transcription factor activity, RNA polymerase II-specific19274049.NASFunction
GO:0001227DNA-binding transcription repressor activity, RNA polymerase II-specific11912130.IDAFunction
GO:0001649osteoblast differentiation20128911.IEPProcess
GO:0001707mesoderm formation-ISSProcess
GO:0001837epithelial to mesenchymal transition16096638.IDAProcess
GO:0001837epithelial to mesenchymal transition-ISSProcess
GO:0003180aortic valve morphogenesis20951801.TASProcess
GO:0003198epithelial to mesenchymal transition involved in endocardial cushion formation-ISSProcess
GO:0003198epithelial to mesenchymal transition involved in endocardial cushion formation20951801.TASProcess
GO:0005515protein binding15448698.16096638.18331720.19411070.19955572.20385133.20389281.20562920.21577210.23644467.24209753.25203322.25314079.25416956.IPIFunction
GO:0005634nucleus15448698.19955572.23288509.24209753.25893292.IDAComponent
GO:0005634nucleus-ISSComponent
GO:0005654nucleoplasm-TASComponent
GO:0005721pericentric heterochromatin24239292.IDAComponent
GO:0005737cytoplasm15448698.19955572.24209753.IDAComponent
GO:0005737cytoplasm-ISSComponent
GO:0005829cytosol-IDAComponent
GO:0010718positive regulation of epithelial to mesenchymal transition20018240.23288509.IMPProcess
GO:0010718positive regulation of epithelial to mesenchymal transition-ISSProcess
GO:0010718positive regulation of epithelial to mesenchymal transition17072303.TASProcess
GO:0010957negative regulation of vitamin D biosynthetic process19502595.IDAProcess
GO:0016477cell migration-IEAProcess
GO:0019900kinase binding15448698.IPIFunction
GO:0030335positive regulation of cell migration15314165.20018240.IMPProcess
GO:0031069hair follicle morphogenesis-IEAProcess
GO:0043518negative regulation of DNA damage response, signal transduction by p53 class mediator15314165.IMPProcess
GO:0045893positive regulation of transcription, DNA-templated20018240.IMPProcess
GO:0046872metal ion binding-IEAFunction
GO:0060021roof of mouth development-IEAProcess
GO:0060536cartilage morphogenesis-IEAProcess
GO:0060707trophoblast giant cell differentiation-IEAProcess
GO:0060806negative regulation of cell differentiation involved in embryonic placenta development-IEAProcess
GO:0060972left/right pattern formation-IEAProcess
GO:0061314Notch signaling involved in heart development-ISSProcess
GO:0061314Notch signaling involved in heart development20951801.TASProcess
GO:0070828heterochromatin organization-ISSProcess
GO:0070888E-box binding11912130.IDAFunction
GO:1902230negative regulation of intrinsic apoptotic signaling pathway in response to DNA damage15314165.IMPProcess
GO:2000810regulation of bicellular tight junction assembly15314165.IMPProcess

Cancer associated literatures
PIDTitleArticle TimeAuthorDoi
24721928RhoGDI2 promotes epithelial-mesenchymal transition via induction of Snail in gastric cancer cells.Oncotarget2014 Mar 30Cho HJ-
24085291Inhibition of Snail1-DNA-PKcs protein-protein interface sensitizes cancer cells and inhibits tumor metastasis.J Biol Chem2013 Nov 8Kang GYdoi: 10.1074/jbc.M113.479840
28215642CCL2 expression correlates with Snail expression and affects the prognosis of patients with gastric cancer.Pathol Res Pract2017 MarZhang Jdoi: 10.1016/j.prp.2016.12.013
29241546Neutrophils and Snail Orchestrate the Establishment of a Pro-tumor Microenvironment in Lung Cancer.Cell Rep2017 Dec 12Faget Jdoi: 10.1016/j.celrep.2017.11.052.
29331416Deubiquitinating enzyme PSMD14 promotes tumor metastasis through stabilizing SNAIL in human esophageal squamous cell carcinoma.Cancer Lett2018 Apr 1Zhu Rdoi: 10.1016/j.canlet.2018.01.025
26845447Downregulation of tumor suppressing STF cDNA 3 promotes epithelial-mesenchymal transition and tumor metastasis of osteosarcoma by the Wnt/GSK-3β/β-catenin/Snail signaling pathway.Cancer Lett2016 Apr 10Lv YFdoi: 10.1016/j.canlet.2016.01.046
18554584Vascular endothelial growth factor-A stimulates Snail expression in breast tumor cells: implications for tumor progression.Exp Cell Res2008 Aug 1Wanami LSdoi: 10.1016/j.yexcr.2008.05.004
22923499Activation of the ATM-Snail pathway promotes breast cancer metastasis.J Mol Cell Biol2012 OctSun Mdoi: 10.1093/jmcb/mjs048
16568079Expression of Snail protein in tumor-stroma interface.Oncogene2006 Aug 24Franci C-
23196056Snail promotes Cyr61 secretion to prime collective cell migration and form invasive tumor nests in squamous cell carcinoma.Cancer Lett2013 Feb 28Tanaka Fdoi: 10.1016/j.canlet.2012.11.023
23449453Mutual regulation between DNA-PKcs and Snail1 leads to increased genomic instability and aggressive tumor characteristics.Cell Death Dis2013 Feb 28Pyun BJdoi: 10.1038/cddis.2013.43.
25303734Transcription factor snail regulates tumor necrosis factor α-mediated synovial fibroblast activation in the rheumatoid joint.Arthritis Rheumatol2015 JanChen SYdoi: 10.1002/art.38899.
18043286The E-cadherin repressor snail plays a role in tumor progression of endometrioid adenocarcinomas.Diagn Mol Pathol2007 DecBlechschmidt K-
19795442Snail is critical for tumor growth and metastasis of ovarian carcinoma.Int J Cancer2010 May 1Jin Hdoi: 10.1002/ijc.24901.
21448462Implication of snail in metabolic stress-induced necrosis.PLoS One2011 Mar 23Kim CHdoi: 10.1371/journal.pone.0018000.
25488750Snail1-expressing fibroblasts in the tumor microenvironment display mechanical properties that support metastasis.Cancer Res2015 Jan 15Stanisavljevic Jdoi: 10.1158/0008-5472.CAN-14-1903
23761168Snail cooperates with KrasG12D to promote pancreatic fibrosis.Mol Cancer Res2013 SepShields MAdoi: 10.1158/1541-7786.MCR-12-0637
21839581Pituitary tumor transforming gene induces epithelial to mesenchymal transition by regulation of Twist, Snail, Slug, and E-cadherin.Cancer Lett2011 Dec 1Shah PPdoi: 10.1016/j.canlet.2011.06.033
24999604Dysregulated expression of Snail and E-cadherin correlates with gastrointestinal stromal tumor metastasis.Eur J Cancer Prev2014 SepLiu Sdoi: 10.1097/CEJ.0000000000000072.
19802011SNAI1 expression in colon cancer related with CDH1 and VDR downregulation in normal adjacent tissue.Oncogene2009 Dec 10Pena Cdoi: 10.1038/onc.2009.285.
27706642Snail-induced epithelial-mesenchymal transition in gastric carcinoma cells and generation of cancer stem cell characteristics.Genet Mol Res2016 Aug 29Yang YJdoi: 10.4238/gmr.15038510.
19887480Snail promotes CXCR2 ligand-dependent tumor progression in non-small cell lung carcinoma.Clin Cancer Res2009 Nov 15Yanagawa Jdoi: 10.1158/1078-0432.CCR-09-1558
22791710Protein kinase D1 mediates anchorage-dependent and -independent growth of tumor cells via the zinc finger transcription factor Snail1.J Biol Chem2012 Sep 21Eiseler T-
28400282MicroRNA-153-3p suppress cell proliferation and invasion by targeting SNAI1 in melanoma.Biochem Biophys Res Commun2017 May 20Zeng HFdoi: 10.1016/j.bbrc.2017.04.032
27503928Snail1-Dependent Activation of Cancer-Associated Fibroblast Controls Epithelial Tumor Cell Invasion and Metastasis.Cancer Res2016 Nov 1Alba-Castellon L-
27705942RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion.Oncotarget2016 Dec 13Liu Bdoi: 10.18632/oncotarget.12396.
21614180Knockdown of snail sensitizes pancreatic cancer cells to chemotherapeutic agents and irradiation.Int J Mol Sci2010Zhang Kdoi: 10.3390/ijms11124891
23342249Overexpression of snail induces epithelial-mesenchymal transition and a cancer stem cell-like phenotype in human colorectal cancer cells.Cancer Med2012 AugFan Fdoi: 10.1002/cam4.4
23973669Snail/beta-catenin signaling protects breast cancer cells from hypoxia attack.Exp Cell Res2013 Dec 10Scherbakov AMdoi: 10.1016/j.yexcr.2013.08.019
25681470Hypoxia promotes HO-8910PM ovarian cancer cell invasion via Snail-mediated MT1-MMP upregulation.Exp Biol Med (Maywood)2015 NovSun Ldoi: 10.1177/1535370215570205
20397042Snail regulates cell survival and inhibits cellular senescence in human metastatic prostate cancer cell lines.Cell Biol Toxicol2010 DecEmadi Baygi Mdoi: 10.1007/s10565-010-9163-5
24354880Effects of a functional variant c.353T>C in snai1 on risk of two contextual diseases. Chronic obstructive pulmonary disease and lung cancer.Am J Respir Crit Care Med2014 Jan 15Yang Ldoi: 10.1164/rccm.201307-1355OC.
28718374Cancer-associated fibroblasts secrete FGF-1 to promote ovarian proliferation, migration, and invasion through the activation of FGF-1/FGFR4 signaling.Tumour Biol2017 JulSun Ydoi: 10.1177/1010428317712592.
28176759Snail reprograms glucose metabolism by repressing phosphofructokinase PFKP allowing cancer cell survival under metabolic stress.Nat Commun2017 Feb 8Kim NHdoi: 10.1038/ncomms14374.
29703902Snail promotes ovarian cancer progression by recruiting myeloid-derived suppressor cells via CXCR2 ligand upregulation.Nat Commun2018 Apr 27Taki Mdoi: 10.1038/s41467-018-03966-7.
30272327Associations of genewide SNPs in SNAI1 and TWIST1 with breast cancer and ovarian cancer susceptibility among Chinese Han women.Oncol Rep2018 DecWang YJdoi: 10.3892/or.2018.6725
28687755The integrated pathway of TGFβ/Snail with TNFα/NFκB may facilitate the tumor-stroma interaction in the EMT process and colorectal cancer prognosis.Sci Rep2017 Jul 7Li Hdoi: 10.1038/s41598-017-05280-6.
30569152Upregulation of USP11 promotes epithelialtomesenchymal transition by deubiquitinating Snail in ovarian cancer.Oncol Rep2019 MarWang Wdoi: 10.3892/or.2018.6924
24402192TWIST1 and SNAI1 as markers of poor prognosis in human colorectal cancer are associated with the expression of ALDH1 and TGF-β1.Oncol Rep2014 MarKim YHdoi: 10.3892/or.2014.2970
24916398Snail and Slug mediate tamoxifen resistance in breast cancer cells through activation of EGFR-ERK independent of epithelial-mesenchymal transition.J Mol Cell Biol2014 AugJiang Ydoi: 10.1093/jmcb/mju019
22629832[The role of transcription factor Snail1 in the regulation of hormonal sensitivity of in vitro cultured breast cancer cells].Vopr Onkol2012Andreeva OE-
22344746SNAI1 overexpression induces stemness and promotes ovarian cancer cell invasion and metastasis.Oncol Rep2012 MayLu ZYdoi: 10.3892/or.2012.1685
24565133SNAI1 is critical for the aggressiveness of prostate cancer cells with low E-cadherin.Mol Cancer2014 Feb 24Deep Gdoi: 10.1186/1476-4598-13-37.
24333218Acquisition of epithelial-mesenchymal transition phenotype and cancer stem cell-like properties in cisplatin-resistant lung cancer cells through AKT/β-catenin/Snail signaling pathway.Eur J Pharmacol2014 Jan 15Wang Hdoi: 10.1016/j.ejphar.2013.12.004
16169460Of Snail, mice, and women.Cancer Cell2005 SepDavidson NE-
19861116Epithelial-mesenchymal transition with expression of SNAI1-induced chemoresistance in colorectal cancer.Biochem Biophys Res Commun2009 Dec 18Hoshino Hdoi: 10.1016/j.bbrc.2009.10.117
23979441Hypoxia-induced snail expression through transcriptional regulation by HIF-1α in pancreatic cancer cells.Dig Dis Sci2013 DecZhu GHdoi: 10.1007/s10620-013-2841-4
20543867miR-661 expression in SNAI1-induced epithelial to mesenchymal transition contributes to breast cancer cell invasion by targeting Nectin-1 and StarD10 messengers.Oncogene2010 Aug 5Vetter Gdoi: 10.1038/onc.2010.181
15712635The transcriptional repressor SNAIL is overexpressed in human colon cancer.Dig Dis Sci2005 JanRoy HK-
25055044Snail-regulated MiR-375 inhibits migration and invasion of gastric cancer cells by targeting JAK2.PLoS One2014 Jul 23Xu Ydoi: 10.1371/journal.pone.0099516
25203322PKD1 phosphorylation-dependent degradation of SNAIL by SCF-FBXO11 regulates epithelial-mesenchymal transition and metastasis.Cancer Cell2014 Sep 8Zheng Hdoi: 10.1016/j.ccr.2014.07.022.
19269083Heregulin-beta1 promotes metastasis of breast cancer cell line SKBR3 through upregulation of Snail and induction of epithelial-mesenchymal transition.Cancer Lett2009 Jul 18Cheng Ldoi: 10.1016/j.canlet.2009.02.007
21796367Co-expression of SNAIL and TWIST determines prognosis in estrogen receptor-positive early breast cancer patients.Breast Cancer Res Treat2012 Mayvan Nes JGdoi: 10.1007/s10549-011-1684-y
25164016Transient SNAIL1 expression is necessary for metastatic competence in breast cancer.Cancer Res2014 Nov 1Tran HDdoi: 10.1158/0008-5472.CAN-14-0923
18026186The E-cadherin repressor Snail is associated with lower overall survival of ovarian cancer patients.Br J Cancer2008 Jan 29Blechschmidt K-
22006115Temporal and spatial cooperation of Snail1 and Twist1 during epithelial-mesenchymal transition predicts for human breast cancer recurrence.Mol Cancer Res2011 DecTran DDdoi: 10.1158/1541-7786.MCR-11-0371
22349639Snail overexpression induces an epithelial to mesenchymal transition and cancer stem cell-like properties in SCC9 cells.Lab Invest2012 MayZhu LFdoi: 10.1038/labinvest.2012.8
26771232Dlx-2 and glutaminase upregulate epithelial-mesenchymal transition and glycolytic switch.Oncotarget2016 Feb 16Lee SYdoi: 10.18632/oncotarget.6879.
20957493Interaction of Snail and p38 mitogen-activated protein kinase results in shorter overall survival of ovarian cancer patients.Virchows Arch2010 DecHipp Sdoi: 10.1007/s00428-010-0986-5
21885439Lung tumor-associated osteoblast-derived bone morphogenetic protein-2 increased epithelial-to-mesenchymal transition of cancer by Runx2/Snail signaling pathway.J Biol Chem2011 Oct 28Hsu YLdoi: 10.1074/jbc.M111.256156
23791882DYRK2 controls the epithelial-mesenchymal transition in breast cancer by degrading Snail.Cancer Lett2013 Oct 10Mimoto Rdoi: 10.1016/j.canlet.2013.06.005
20576520SNAIL induces epithelial-to-mesenchymal transition in a human pancreatic cancer cell line (BxPC3) and promotes distant metastasis and invasiveness in vivo.Exp Mol Pathol2010 OctNishioka Rdoi: 10.1016/j.yexmp.2010.05.008
25122124Snail promotes epithelial mesenchymal transition in breast cancer cells in part via activation of nuclear ERK2.PLoS One2014 Aug 14Smith BNdoi: 10.1371/journal.pone.0104987
22307688The relationships between snail1 and estrogen receptor signaling in breast cancer cells.J Cell Biochem2012 JunScherbakov AMdoi: 10.1002/jcb.24087.
26498709Snail-induced EMT promotes cancer stem cell-like properties in head and neck cancer cells.Oncol Rep2016 JanOta Idoi: 10.3892/or.2015.4348
18234959Transforming growth factor-beta 1 promotes matrix metalloproteinase-9-mediated oral cancer invasion through snail expression.Mol Cancer Res2008 JanSun Ldoi: 10.1158/1541-7786.MCR-07-0208.
24610352Stabilization of Snail by HIF-1α and TNF-α is required for hypoxia-induced invasion in prostate cancer PC3 cells.Mol Biol Rep2014 JulLv Ldoi: 10.1007/s11033-014-3328-x
22471696Snail is an independent prognostic predictor for progression and patient survival of gastric cancer.Cancer Sci2012 JulHe Hdoi: 10.1111/j.1349-7006.2012.02295.x
26840564Tristetraprolin suppresses the EMT through the down-regulation of Twist1 and Snail1 in cancer cells.Oncotarget2016 Feb 23Yoon NAdoi: 10.18632/oncotarget.7094.
25608841Combined Runx2 and Snail overexpression is associated with a poor prognosis in breast cancer.Tumour Biol2015 JunYang Zdoi: 10.1007/s13277-015-3101-3
17952120Snail is a repressor of RKIP transcription in metastatic prostate cancer cells.Oncogene2008 Apr 3Beach S-
25088797AKT/GSK-3β regulates stability and transcription of snail which is crucial for bFGF-induced epithelial-mesenchymal transition of prostate cancer cells.Biochim Biophys Acta2014 OctLiu ZCdoi: 10.1016/j.bbagen.2014.07.018
19046938Tumor-induced upregulation of Twist, Snail, and Slug represses the activity of the human VE-cadherin promoter.Arch Biochem Biophys2009 FebLopez Ddoi: 10.1016/j.abb.2008.11.016
27455254Akt Activation Correlates with Snail Expression and Potentially Determines the Recurrence of Prostate Cancer in Patients at Stage T2 after a Radical Prostatectomy.Int J Mol Sci2016 Jul 23Chen WYdoi: 10.3390/ijms17081194.
22471493Inhibition of invasion and metastasis of gastric cancer cells through snail targeting artificial microRNA interference.Asian Pac J Cancer Prev2011Guo HM-
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20403241[Relationship between E-CD and Snail expressions and tumor invasion, metastasis and prognosis in colorectal cancer].Zhonghua Zhong Liu Za Zhi2010 FebZheng BA-
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25172658Snail regulates the motility of oral cancer cells via RhoA/Cdc42/p-ERM pathway.Biochem Biophys Res Commun2014 Sep 26Li YYdoi: 10.1016/j.bbrc.2014.08.110
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23856093VAV1 represses E-cadherin expression through the transactivation of Snail and Slug: a potential mechanism for aberrant epithelial to mesenchymal transition in human epithelial ovarian cancer.Transl Res2013 SepWakahashi Sdoi: 10.1016/j.trsl.2013.06.005
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27495232Quercetin modulates Wnt signaling components in prostate cancer cell line by inhibiting cell viability, migration, and metastases.Tumour Biol2016 OctBaruah MM-
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24424718Increased SNAIL expression and low syndecan levels are associated with high Gleason grade in prostate cancer.Int J Oncol2014 MarPoblete CEdoi: 10.3892/ijo.2014.2254
23431386Epithelial-mesenchymal transition (EMT) induced by TNF-α requires AKT/GSK-3β-mediated stabilization of snail in colorectal cancer.PLoS One2013Wang Hdoi: 10.1371/journal.pone.0056664
27057280CCL21 Facilitates Chemoresistance and Cancer Stem Cell-Like Properties of Colorectal Cancer Cells through AKT/GSK-3β/Snail Signals.Oxid Med Cell Longev2016Lu LLdoi: 10.1155/2016/5874127
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23054398Inhibiting interactions of lysine demethylase LSD1 with snail/slug blocks cancer cell invasion.Cancer Res2013 Jan 1Ferrari-Amorotti Gdoi: 10.1158/0008-5472.CAN-12-1739
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23807662SNAI1 protein expression is an independent negative prognosticator in muscle-invasive bladder cancer.Ann Surg Oncol2013 OctKeck Bdoi: 10.1245/s10434-013-3075-6
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25547433RKIP promotes cisplatin-induced gastric cancer cell death through NF-κB/Snail pathway.Tumour Biol2015 MarLiu Hdoi: 10.1007/s13277-014-2496-6
25975373Expression and clinical significance of hypoxia-inducible factor 1α, Snail and E-cadherin in human ovarian cancer cell lines.Mol Med Rep2015 SepZhang Ydoi: 10.3892/mmr.2015.3786
18676743Epithelial-mesenchymal transition in cervical cancer: correlation with tumor progression, epidermal growth factor receptor overexpression, and snail up-regulation.Clin Cancer Res2008 Aug 1Lee MYdoi: 10.1158/1078-0432.CCR-08-0234.
24242829Protumorigenic effects of Snail-expression fibroblasts on colon cancer cells.Int J Cancer2014 Jun 15Herrera Adoi: 10.1002/ijc.28613
24503443Functional links between Snail-1 and Cx43 account for the recruitment of Cx43-positive cells into the invasive front of prostate cancer.Carcinogenesis2014 SepRyszawy Ddoi: 10.1093/carcin/bgu033
24489910Snail contributes to the maintenance of stem cell-like phenotype cells in human pancreatic cancer.PLoS One2014 Jan 29Zhou Wdoi: 10.1371/journal.pone.0087409
18321996Inhibition of CCN6 (Wnt-1-induced signaling protein 3) down-regulates E-cadherin in the breast epithelium through induction of snail and ZEB1.Am J Pathol2008 AprHuang Wdoi: 10.2353/ajpath.2008.070899
23791009The nuclear protein expression levels of SNAI1 and ZEB1 are involved in the progression and lymph node metastasis of cervical cancer via the epithelial-mesenchymal transition pathway.Hum Pathol2013 OctChen Zdoi: 10.1016/j.humpath.2013.04.001
20166136Snail transcription factor regulates neuroendocrine differentiation in LNCaP prostate cancer cells.Prostate2010 Jun 15McKeithen Ddoi: 10.1002/pros.21132.
26764010Proteomic Analysis of Epithelial to Mesenchymal Transition (EMT) Reveals Cross-talk between SNAIL and HDAC1 Proteins in Breast Cancer Cells.Mol Cell Proteomics2016 MarPalma Cde Sdoi: 10.1074/mcp.M115.052910
20138990The transcription factors Snail1 and Snail2 repress vitamin D receptor during colon cancer progression.J Steroid Biochem Mol Biol2010 JulLarriba MJdoi: 10.1016/j.jsbmb.2010.01.014
22974478Snail promotes lymph node metastasis and Twist enhances tumor deposit formation through epithelial-mesenchymal transition in colorectal cancer.Hum Pathol2013 FebFan XJdoi: 10.1016/j.humpath.2012.03.029
26336990The positive feedback between Snail and DAB2IP regulates EMT, invasion and metastasis in colorectal cancer.Oncotarget2015 Sep 29Wang Jdoi: 10.18632/oncotarget.4861.
27749822Snail1-dependent p53 repression regulates expansion and activity of tumour-initiating cells in breast cancer.Nat Cell Biol2016 NovNi Tdoi: 10.1038/ncb3425
27878251Glyceraldehyde-3-phosphate dehydrogenase promotes cancer growth and metastasis through upregulation of SNAIL expression.Int J Oncol2017 JanLiu Kdoi: 10.3892/ijo.2016.3774
2755460114-3-3ζ promotes lung cancer cell invasion by increasing the Snail protein expression through atypical protein kinase C (aPKC)/NF-κB signaling.Exp Cell Res2016 Oct 15Tong Sdoi: 10.1016/j.yexcr.2016.08.014
28299321JianPi JieDu Recipe Inhibits Epithelial-to-Mesenchymal Transition in Colorectal Cancer through TGF-β/Smad Mediated Snail/E-Cadherin Expression.Biomed Res Int2017Liu Xdoi: 10.1155/2017/2613198
27504909Enhancer decommissioning by Snail1-induced competitive displacement of TCF7L2 and down-regulation of transcriptional activators results in EPHB2 silencing.Biochim Biophys Acta2016 NovSchnappauf Odoi: 10.1016/j.bbagrm.2016.08.002
28259904Silencing Snail suppresses tumor cell proliferation and invasion by reversing epithelial-to-mesenchymal transition and arresting G2/M phase in non-small cell lung cancer.Int J Oncol2017 AprYang Xdoi: 10.3892/ijo.2017.3888
27171242Genetic Polymorphisms of TGFB1, TGFBR1, SNAI1 and TWIST1 Are Associated with Endometrial Cancer Susceptibility in Chinese Han Women.PLoS One2016 May 12Yang Ldoi: 10.1371/journal.pone.0155270
27461247The clinical significance of snail protein expression in gastric cancer: a meta-analysis.Hum Genomics2016 Jul 25Chen Xdoi: 10.1186/s40246-016-0070-6.
27596137MiR-137 and miR-34a directly target Snail and inhibit EMT, invasion and sphere-forming ability of ovarian cancer cells.J Exp Clin Cancer Res2016 Sep 5Dong Pdoi: 10.1186/s13046-016-0415-y.
28691764Cten promotes epithelial-mesenchymal transition through the post-transcriptional stabilization of Snail.Mol Carcinog2017 DecThorpe Hdoi: 10.1002/mc.22704
27184007Mouse double minute 2 (MDM2) upregulates Snail expression and induces epithelial-to-mesenchymal transition in breast cancer cells in vitro and in vivo.Oncotarget2016 Jun 14Lu Xdoi: 10.18632/oncotarget.9287.
27322434SiRNA-mediated silencing of Snail-1 induces apoptosis and alters micro RNA expression in human urinary bladder cancer cell line.Artif Cells Nanomed Biotechnol2017 AugMusavi Shenas SMHdoi: 10.1080/21691401.2016.1198361
27409172Snail promotes resistance to enzalutamide through regulation of androgen receptor activity in prostate cancer.Oncotarget2016 Aug 2Ware KEdoi: 10.18632/oncotarget.10476.
28296173Snail acetylation by histone acetyltransferase p300 in lung cancer.Thorac Cancer2017 MayChang Rdoi: 10.1111/1759-7714.12408
27566588Role of RbBP5 and H3K4me3 in the vicinity of Snail transcription start site during epithelial-mesenchymal transition in prostate cancer cell.Oncotarget2016 Oct 4Li Ddoi: 10.18632/oncotarget.11549.
27894095MicroRNA-182 drives colonization and macroscopic metastasis via targeting its suppressor SNAI1 in breast cancer.Oncotarget2017 Jan 17Zhan Ydoi: 10.18632/oncotarget.13542.
27829223EGF induces epithelial-mesenchymal transition through phospho-Smad2/3-Snail signaling pathway in breast cancer cells.Oncotarget2016 Dec 20Kim Jdoi: 10.18632/oncotarget.13116.
28498415Downregulated connexin32 promotes EMT through the Wnt/β-catenin pathway by targeting Snail expression in hepatocellular carcinoma.Int J Oncol2017 JunYang Ydoi: 10.3892/ijo.2017.3985
28424413The SNAIL/miR-128 axis regulated growth, invasion, metastasis, and epithelial-to-mesenchymal transition of gastric cancer.Oncotarget2017 Jun 13Yu WWdoi: 10.18632/oncotarget.16849.
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Differential Expression

Expression in 33 cancers

Mutations
CancerChrPosition Mutation TypedbSNPProtein-change Allele FreqRBD
BLCAchr2049987923Missense_MutationnovelS221C0.11zf-C2H2
BLCAchr20499830035'UTRnovel0.31
BLCAchr2049988040Missense_MutationNAS260L0.52
BLCAchr2049984137Missense_MutationnovelL132F0.18
BRCAchr2049987919Missense_MutationNAR220C0.31zf-C2H2
BRCAchr2049987942SilentNAL227L0.15
BRCAchr2049987989Missense_MutationNAR243Q0.29
BRCAchr20499884483'UTRnovel0.38
CESCchr20499885713'UTRnovel0.21
CESCchr2049987953Nonsense_MutationNAS231*0.29
CESCchr2049988001Missense_MutationNAR247P0.42
CESCchr2049984282Missense_Mutationrs369673182V181I0.37
CESCchr20499880623'UTRrs3744390620.19
CHOLchr20499883613'UTRnovel0.35
COADchr2049987988Missense_MutationNAR243W0.42
COADchr2049984300Missense_MutationNAK187E0.48
COADchr2049987874Missense_MutationNAE205K0.23
COADchr2049987920Missense_MutationNAR220H0.14zf-C2H2
COADchr2049987874Missense_MutationNAE205K0.1
ESCAchr20499884503'UTRrs1886282610.33
ESCAchr20499881353'UTRnovel0.63
ESCAchr20499884503'UTRrs1886282610.21
ESCAchr2049984297Missense_MutationnovelG186R0.19
GBMchr20499881193'UTRnovel0.89
HNSCchr2049984045Frame_Shift_DelnovelS104Afs*1760.1
LIHCchr20499830525'UTRnovel0.1
LUADchr2049983872Missense_MutationnovelI44T0.09
LUADchr2049984141Nonsense_MutationNAQ134*0.24
LUADchr2049983918Silentrs369225838L59L0.3
LUADchr2049987924SilentNAS221S0.15
LUADchr2049984148Missense_MutationNAP136L0.21
LUSCchr2049983932Missense_MutationNAV64D0.37
LUSCchr2049983929Missense_MutationNAS63C0.15
LUSCchr2049983889Missense_MutationnovelL50F0.16
LUSCchr2049988014Frame_Shift_DelnovelH252Tfs*280.14
LUSCchr2049984111Missense_Mutationrs771035489E124K0.42
LUSCchr2049983881Missense_MutationNAP47L0.4
OVchr2049987905Missense_Mutationrs768825298R215H0.54zf-C2H2
OVchr20499882203'UTRnovel0.15
OVchr2049983885Missense_MutationNAE48D0.42
OVchr2049988042Missense_MutationnovelG261R0.06
READchr2049987874Missense_MutationNAE205K0.68
READchr2049983061Translation_Start_SitenovelM1?0.28
SARCchr2049983969Silentrs758694399S76S0.51
SARCchr2049984097Missense_MutationnovelS119F0.46
SARCchr2049984098SilentnovelS119S0.45
SKCMchr2049983834Missense_MutationNAF31L0.54
SKCMchr2049984085Missense_MutationnovelS115F0.33
SKCMchr2049984101SilentnovelS120S0.24
SKCMchr2049984082Missense_Mutationrs774280694S114F0.08
SKCMchr2049984193Missense_MutationnovelR151Q0.64
SKCMchr2049984083SilentNAS114S0.2
SKCMchr2049984308Missense_MutationNAF189L0.28
SKCMchr2049983929Missense_MutationnovelS63F0.36
SKCMchr2049988008SilentnovelS249S0.46
SKCMchr2049984069Missense_Mutationrs754163516P110S0.46
SKCMchr20499880653'UTRnovel0.33
STADchr2049988052Missense_MutationNAR264H0.26
STADchr2049988052Missense_MutationNAR264H0.39
STADchr2049983844Missense_MutationNAY35N0.17
STADchr2049988033Missense_Mutationrs151036730G258S0.11
STADchr20499880873'UTRnovel0.15
UCECchr2049984340Missense_MutationNAR200Q0.14
UCECchr2049988010Frame_Shift_DelnovelL250Rfs*300.09
UCECchr2049987983Missense_MutationnovelC241F0.15
UCECchr2049987914Missense_MutationnovelA218V0.24zf-C2H2
UCECchr20499830425'UTRrs7619295580.33
UCECchr2049984262Missense_MutationnovelR174Q0.41
UCECchr2049983837SilentnovelQ32Q0.18
UCECchr20499881183'UTRnovel0.3
UCECchr2049984192Nonsense_MutationnovelR151*0.25
UCECchr2049984288Missense_Mutationrs544515729G183R0.29
UCECchr2049987959Missense_MutationnovelV233G0.26
UCECchr20499881473'UTRnovel0.31
UCECchr20499885733'UTRnovel0.23
UCECchr2049984244Missense_Mutationrs772006202A168V0.38
UCECchr2049983974Missense_Mutationrs748041292R78Q0.35
UCECchr2049983079Missense_MutationnovelV7A0.42
UCECchr20499883313'UTRrs1863659870.38
UCECchr2049987897Missense_MutationNAH212Q0.31zf-C2H2

Copy Number Variations (CNVs)
CancerTypeFreq Q-value
LAMLDEL0.02090.14746
LUADDEL0.10080.18308
PRADAMP0.05690.07085

Survival Analysis
CancerP-value Q-value
KIRC0.005

Kaplan-Meier Survival Analysis

STAD0.0089

Kaplan-Meier Survival Analysis

MESO0.0046

Kaplan-Meier Survival Analysis

HNSC0.047

Kaplan-Meier Survival Analysis

LUSC0.00019

Kaplan-Meier Survival Analysis

ESCA0.033

Kaplan-Meier Survival Analysis

KIRP0.0044

Kaplan-Meier Survival Analysis

COAD0.00031

Kaplan-Meier Survival Analysis

BLCA0.004

Kaplan-Meier Survival Analysis

CESC0.033

Kaplan-Meier Survival Analysis

READ0.03

Kaplan-Meier Survival Analysis

UCEC0.0059

Kaplan-Meier Survival Analysis

GBM0.0027

Kaplan-Meier Survival Analysis

LGG0.0001

Kaplan-Meier Survival Analysis

THCA0.001

Kaplan-Meier Survival Analysis

LUAD0.011

Kaplan-Meier Survival Analysis

UVM0.02

Kaplan-Meier Survival Analysis

OV0.012

Kaplan-Meier Survival Analysis

Drugs

Select Dataset :


Input Drug :


Input Cell Line :


Eesembl ID



Cell lines and drugs in GSE70138 or GSE92742


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