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GeneQ18047474· pop 5· linked from 4 articles

Also known as BS-63, BS63, HEL161, RGP5, RANBP2-like and GRIP domain containing 5, RANBP2 like and GRIP domain containing 5

RANBP2-like and GRIP domain-containing protein 5 is a protein that in humans is encoded by the RGPD5 gene.

Gene data

RGPD5
Name
RANBP2 like and GRIP domain containing 5
Type
protein-coding
Aliases
BS-63, BS63, HEL161, RGP5

RAN is a small GTP-binding protein of the RAS superfamily that is associated with the nuclear membrane and is thought to control a variety of cellular functions through its interactions with other proteins. This gene shares a high degree of sequence identity with RANBP2, a large RAN-binding protein localized at the cytoplasmic side of the nuclear pore complex. It is believed that this RANBP2 gene family member arose from a duplication event 3 Mb distal to RANBP2. Alternative splicing has been observed for this locus and two variants are described. Additional splicing is suggested but complete sequence for further transcripts has not been determined. [provided by RefSeq, Jul 2008].

via MyGene.info

Gene · Ensembl

RANBP2 like and GRIP domain containing 5

Symbol
RGPD5
Biotype
Protein coding
Organism
Homo sapiens
Location
2:109,792,758-109,857,705
Strand
Forward (+)
Assembly
GRCh38
View on Ensembl →

via Ensembl · EMBL-EBI

Wikidata facts

Image
Protein RGPD5 PDB 1xke.png
Show 5 more facts
HomoloGene ID
87808
genomic start
113127669
genomic end
109857705
cytogenetic location
2q13
Sources (3)

via Wikidata · CC0

~1 min read

Article

3 sections
Contents
  • Interactions
  • References
  • Further reading

RANBP2-like and GRIP domain-containing protein 5 is a protein that in humans is encoded by the RGPD5 gene.

RAN is a small GTP-binding protein of the RAS superfamily that is associated with the nuclear membrane and is thought to control a variety of cellular functions through its interactions with other proteins. This gene shares a high degree of sequence identity with RANBP2, a large RAN-binding protein localized at the cytoplasmic side of the nuclear pore complex. It is believed that this RANBP2 gene family member arose from a duplication event 3 Mb distal to RANBP2. Alternative splicing has been observed for this locus and two variants are described. Additional splicing is suggested but complete sequence for further transcripts has not been determined.

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