ANAPC10

Anaphase Promoting Complex Subunit 10

Gene Information Card

Symbol ANAPC10
Full Name Anaphase Promoting Complex Subunit 10
Gene Type protein-coding
Chromosomal Location 4q31.21
NCBI Gene ID 10393 ncbi.nlm.nih.gov/gene/10393
Ensembl ID ENSG00000164124
UniProt ID Q9UM13
OMIM ID 609745
HGNC ID 24012
Aliases APC10, DOC1, MGC12685

Description

ANAPC10 encodes a subunit of the anaphase-promoting complex/cyclosome (APC/C), a cell cycle-regulated E3 ubiquitin ligase that controls progression through mitosis and the G1 phase of the cell cycle. The protein is essential for substrate recognition and ubiquitination of securin and cyclins.

Disease Associations

Disease category Pathophysiological mechanism Genomic evidence
Colorectal cancer Altered APC/C activity may contribute to chromosomal instability COSMIC; PMID: 12080066
Endometrial cancer Somatic mutations in ANAPC10 reported COSMIC; PMID: 23525077

Expression Profile

Tissue Expression
Tissue nTPM level
Testis 12.5 Medium
Lymph node 9.8 Medium
Brain 6.2 Low
Cell Line Expression
Cell Line nTPM Notes
HeLa 10.1 Cervical cancer cell line
HEK 293 8.5 Embryonic kidney cell line
K562 7.3 Leukemia cell line
Data source:Human Protein Atlas(proteinatlas.org)

Mutations & Variants

Hotspot Mutations
Variant Type Frequency Functional Description
c.287A>G (p.Asn96Ser) Missense <0.01% Unknown functional impact
c.412C>T (p.Arg138Trp) Missense <0.01% Reported in COSMIC
Mutation functional classification

Loss of Function (LOF)

Not well characterized; predicted to impair APC/C activity

Gain of Function (GOF)

Not reported

Dominant Negative (DN)

Not reported

Gene Ontology (GO)

• ubiquitin protein ligase activity • anaphase-promoting complex
• cell cycle • protein ubiquitination
• mitotic cell cycle

Pathways

Cell Cycle
Mitotic
APC/C-mediated degradation of cell cycle proteins
Ubiquitin mediated proteolysis

Protein Summary

ANAPC10 is a 185-amino acid protein that forms part of the APC/C complex. It contains a DOC domain critical for substrate binding and ubiquitin chain elongation. The protein is highly conserved across eukaryotes.

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