Multifaceted role of the DNA replication protein MCM10 in maintaining genome stability and its implication in human diseases

被引:2
|
作者
Ahmed, Sumayyah M. Q. [1 ]
Sasikumar, Jayaprakash [1 ]
Laha, Suparna [1 ]
Das, Shankar Prasad [1 ]
机构
[1] Yenepoya, Yenepoya Res Ctr YRC, Cell Biol & Mol Genet CBMG, Mangalore 575018, India
关键词
MCM10; Chromosomal instability; Replication stress; Replication initiation; Cancer aggressiveness; Replication timing; MINICHROMOSOME MAINTENANCE COMPLEX; EUKARYOTIC CMG HELICASE; DOUBLE-HEXAMERIC MCM2-7; POLYMERASE-ALPHA; CELL-PROLIFERATION; CHROMATIN ASSOCIATION; PROGNOSTIC BIOMARKER; CATALYTIC SUBUNIT; XENOPUS MCM10; ORIGIN DNA;
D O I
10.1007/s10555-024-10209-3
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
MCM10 plays a vital role in genome duplication and is crucial for DNA replication initiation, elongation, and termination. It coordinates several proteins to assemble at the fork, form a functional replisome, trigger origin unwinding, and stabilize the replication bubble. MCM10 overexpression is associated with increased aggressiveness in breast, cervical, and several other cancers. Disruption of MCM10 leads to altered replication timing associated with initiation site gains and losses accompanied by genome instability. Knockdown of MCM10 affects the proliferation and migration of cancer cells, manifested by DNA damage and replication fork arrest, and has recently been shown to be associated with clinical conditions like CNKD and RCM. Loss of MCM10 function is associated with impaired telomerase activity, leading to the accumulation of abnormal replication forks and compromised telomere length. MCM10 interacts with histones, aids in nucleosome assembly, binds BRCA2 to maintain genome integrity during DNA damage, prevents lesion skipping, and inhibits PRIMPOL-mediated repriming. It also interacts with the fork reversal enzyme SMARCAL1 and inhibits fork regression. Additionally, MCM10 undergoes several post-translational modifications and contributes to transcriptional silencing by interacting with the SIR proteins. This review explores the mechanism associated with MCM10's multifaceted role in DNA replication initiation, chromatin organization, transcriptional silencing, replication stress, fork stability, telomere length maintenance, and DNA damage response. Finally, we discuss the role of MCM10 in the early detection of cancer, its prognostic significance, and its potential use in therapeutics for cancer treatment.
引用
收藏
页码:1353 / 1371
页数:19
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