Labrus_bergyltaFamily: RRM_1 Number of Genes: 240
Ensembl IDSymbolEntrez IDRBD RBPome PRIExpresion PathwayPhenotype ParalogOrthologGO
-
-
-
cirbpa
dazap1
-
-
rbm24b
-
rbm17
celf4
CPSF7
rbm4.3
-
-
htatsf1
-
sart3
uhmk1
-
-
ewsr1b
hnrnph3 (1 of many)
-
CPEB4 (1 of many)
-
-
-
zgc:163098
-
zgc:153215
-
rbm24a
-
-
sfpq
nifk (1 of many)
enox2 (1 of many)
-
enox2 (1 of many)
-
raver2
rbfox3b
zcrb1
setd1a
pspc1
-
hnrnpm
-
-
eif3bb
-
-
-
tra2a
igf2bp3
-
-
-
myef2
RBMS1 (1 of many)
safb
dazl
-
-
-
-
hnrnpaba
rbms3
-
-
msi2a
elavl4 (1 of many)
srsf6a
slirp
rbm10
-
-
-
-
-
elavl3
raver1
rbm15
rbm47
-
-
hnrnph3 (1 of many)
MSI1
ptbp1a
REXO5
rbm39b
-
cnot4a
rbmx
hnrnpa1a
pabpc1l
-
rbm25b
-
-
rbms2b
-
-
-
si:dkey-205h23.2
rbm45
PABPN1L
trnau1apa
ptbp2a
ppil4
-
-
-
puf60b
-
-
-
-
tial1
g3bp1
-
rbm19
-
-
rbm28
-
-
nelfe
srsf3b
-
-
-
srsf5b
pabpc4
-
-
rbfox1
scaf4a
-
tut1
syncripl
elavl4 (1 of many)
HNRNPLL
-
rbm8a
cpsf6
pprc1
-
-
-
u2af2a
RBM38
g3bp2
celf5a
hnrnpa3
rbfox1l
-
-
srsf5a
-
-
-
-
-
rbpms2b
-
ssb
-
-
srsf9
rbm42
rbms2a
grsf1
-
srsf7a
matr3l1.1
celf1
hnrnpl
-
-
-
rbm38
-
ncl
-
-
-
-
alkbh8
ptbp3
-
ppargc1a
-
rbm4.1
larp7
setd1ba
ncbp2
trnau1apb
eif4bb
syncrip
si:ch1073-335m2.2
rbm5
-
eif3g
-
a1cf
-
snrpa
-
rbm15b
-
snrpb2
tardbpl
elavl1a
igf2bp1
-
-
nono
-
raly (1 of many)
-
cpeb2
-
srsf2b
cpeb4a
tardbp
fus
sf3b6
-
-
srek1
-
-
-
tia1l
alyref
TRA2B
-
-
-
-
rbm18
zgc:123010
-
enox1
-
-
RNPS1
-
dnd1
srsf11
-
-
-
-
rnpc3
rbm7
-
-
-
trmt2a
rbm27
sltm
cpeb3
rbms1a
celf3b
nol8
-
dnajc17
u2surp
sf3b4
pabpc1b
celf3a
hnrnpr
nifk (1 of many)
srsf2a
pabpn1
-
hnrnpd
-
-
-
rbm22
hnrnph1
ELAVL2
rbm14b
-
-
RBPMS
-
rbm34
-
-
raly (1 of many)
-
cstf2
-

Introduction

Pfam

The RRM motif is probably diagnostic of an RNA binding protein. RRMs are found in a variety of RNA binding proteins, including various hnRNP proteins, proteins implicated in regulation of alternative splicing, and protein components of snRNPs. The motif also appears in a few single stranded DNA binding proteins. The RRM structure consists of four strands and two helices arranged in an alpha/beta sandwich, with a third helix present during RNA binding in some cases The C-terminal beta strand (4th strand) and final helix are hard to align and have been omitted in the SEED alignment The LA proteins (P05455) have an N terminal rrm which is included in the seed. There is a second region towards the C terminus that has some features characteristic of a rrm but does not appear to have the important structural core of a rrm. The LA proteins (P05455) are one of the main autoantigens in Systemic lupus erythematosus (SLE), an autoimmune disease.

InterPro

Many eukaryotic proteins containing one or more copies of a putative RNA-binding domain of about 90 amino acids are known to bind single-stranded RNAs [PUBMED:3072706, PUBMED:3192525, PUBMED:3313012]. The largest group of single strand RNA-binding proteins is the eukaryotic RNA recognition motif (RRM) family that contains an eight amino acid RNP-1 consensus sequence [PUBMED:2470643, PUBMED:2467746]. RRM proteins have a variety of RNA binding preferences and functions, and include heterogeneous nuclear ribonucleoproteins (hnRNPs), proteins implicated in regulation of alternative splicing (SR, U2AF, Sxl), protein components of small nuclear ribonucleoproteins (U1 and U2 snRNPs), and proteins that regulate RNA stability and translation (PABP, La, Hu) [PUBMED:3192525, PUBMED:3313012, PUBMED:2467746]. The RRM in heterodimeric splicing factor U2 snRNP auxiliary factor (U2AF) appears to have two RRM-like domains with specialised features for protein recognition [PUBMED:15231733]. The motif also appears in a few single stranded DNA binding proteins.

Reference

  1. Birney E., Kumar S., Krainer A.R. , Nucleic Acid Res 1993;21:5803-5816.: Analysis of the RNA-recognition motif and RS and RGG domains: conservation in metazoan pre-mRNA splicing factors. PUBMED:8290338 EPMC:8290338.