Saimiri_boliviensis_boliviensisFamily: MMR_HSR1 Number of Genes: 108
Ensembl IDSymbolEntrez IDRBD RBPome PRIExpresion PathwayPhenotype ParalogOrthologGO
OLA1
GTPBP3
RABL3
-
-
-
-
RAB15
SEPT14
RRAGB
RAB7A
SRPRB
ARL4D
SEPT2
ARL2-SNX15
-
-
RAB11A
RAB9A
RASL11B
RAB36
GNL3
GNL2
-
SEPT11
ARF4
ARL5C
NRAS
RAB12
SEPT8
SEPT4
-
ARF5
SEPT1
ARFRP1
KRAS
GIMAP6
NOA1
HRAS
EHD1
RAB1A
-
SEPT6
-
CRACR2A
SEPT3
RAB39B
RAB33A
RAB2A
RASL11A
GTPBP8
-
GPN1
EHD2
-
RAB30
-
-
DNM1L
MTIF2
RAB14
-
RAB6A
GTPBP4
GIMAP8
RAB33B
NUGGC
MTG2
SRL
RASEF
ARL5B
RAB34
-
-
-
-
ARL3
GUF1
EHD3
ARL6
GIMAP4
-
-
NKIRAS2
ARL10
-
GNL1
-
MFN2
-
RAB6B
RAB25
ARL8B
-
ARL4C
-
RAB23
-
RAB1B
GIMD1
-
EIF5B
GTPBP10
MFN1
RERG
ARL5A
RAB2B
LSG1
RAB11B
RAB5B
-
EHD4
-
DRG1
SEPT12
SAR1A
ARL4A

Introduction

Pfam

The full-length GTPase protein is required for the complete activity of the protein of interacting with the 50S ribosome and binding of both adenine and guanine nucleotides, with a preference for guanine nucleotide.

InterPro

Several proteins have recently been shown to contain the 5 structural motifs characteristic of GTP-binding proteins [PUBMED:1449490]. These include murine DRG protein; GTP1 protein from Schizosaccharomyces pombe; OBG protein from Bacillus subtilis [PUBMED:12429099]; ferrous iron transport protein B [PUBMED:20123128] and several others.

Reference

  1. Vernet C, Ribouchon MT, Chimini GPontarotti P; , Mamm Genome 1994;5:100-105.: Structure and evolution of a member of a new subfamily of GTP-binding proteins mapping to the human MHC class I region. PUBMED:8180467 EPMC:8180467 .

  2. Bassler J, Kallas M, Hurt E;, J Biol Chem. 2006;281:24737-24744.: The NUG1 GTPase reveals and N-terminal RNA-binding domain that is essential for association with 60 S pre-ribosomal particles. PUBMED:16803892 EPMC:16803892 .

  3. Jain N, Dhimole N, Khan AR, De D, Tomar SK, Sajish M, Dutta D, Parrack P, Prakash B;, Biochem Biophys Res Commun. 2009;379:201-205.: E. coli HflX interacts with 50S ribosomal subunits in presence of nucleotides. PUBMED:19109926 EPMC:19109926 .

  4. Dutta D, Bandyopadhyay K, Datta AB, Sardesai AA, Parrack P;, J Bacteriol. 2009;191:2307-2314.: Properties of HflX, an enigmatic protein from Escherichia coli. PUBMED:19181811 EPMC:19181811 .

  5. Shields MJ, Fischer JJ, Wieden HJ;, Biochemistry. 2009;48:10793-10802.: Toward understanding the function of the universally conserved GTPase HflX from Escherichia coli: a kinetic approach. PUBMED:19824612 EPMC:19824612.