Basic Information

Symbol
RAP1GAP
RNA class
mRNA
Alias
RAP1 GTPase Activating Protein RAP1GAPII KIAA0474 RAP1GAP1 RAP1GA1 Rap1 GTPase-Activating Protein 1 RAP1, GTPase Activating Protein 1 Rap1GAP1 Rap1GAP RAPGAP
Location (GRCh38)
Forensic tag(s)
Chronological age estimation

MANE select

Transcript ID
NM_002885.4
Sequence length
3322.0 nt
GC content
0.5975

Transcripts

ID Sequence Length GC content
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3782 nt 0.5994
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3553 nt 0.6009
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3660 nt 0.5995
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3505 nt 0.6017
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3165 nt 0.5962
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3463 nt 0.6009
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3442 nt 0.5982
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3045 nt 0.5993
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3805 nt 0.5942
GAACUGCGGCGGCGGCGAGCGCCGGCCGCAUCUGAGCAGAGCUGCAGCG… 3629 nt 0.5949
Showing 21 to 30 of 94 entries
Summary

This gene encodes a type of GTPase-activating-protein (GAP) that down-regulates the activity of the ras-related RAP1 protein. RAP1 acts as a molecular switch by cycling between an inactive GDP-bound form and an active GTP-bound form. The product of this gene, RAP1GAP, promotes the hydrolysis of bound GTP and hence returns RAP1 to the inactive state whereas other proteins, guanine nucleotide exchange factors (GEFs), act as RAP1 activators by facilitating the conversion of RAP1 from the GDP- to the GTP-bound form. In general, ras subfamily proteins, such as RAP1, play key roles in receptor-linked signaling pathways that control cell growth and differentiation. RAP1 plays a role in diverse processes such as cell proliferation, adhesion, differentiation, and embryogenesis. Alternative splicing results in multiple transcript variants encoding distinct proteins. [provided by RefSeq, Aug 2011]

Forensic Context

A study in humans analyzed peripheral blood mRNA expression profiles from 127 Chinese individuals and identified the RAP1GAP as a differentially expressed gene exhibiting a consistent trend in expression from young adulthood to later life [Liao et al. DOI:10.1016/J.Fsigen.2025.103373]. This mRNA was selected as one of 34 candidate age-related genes and incorporated into a machine learning-based age prediction model, with the optimal elastic net model achieving a mean absolute error of 6.72 years on the test set.