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PMID: 24026117 已发表 · ppublish 英语

APC2 and Axin promote mitotic fidelity by facilitating centrosome separation and cytoskeletal regulation.

Development (Cambridge, England) ·第 140 卷 ·第 20 期 ·2013-12-11

Poulton John S, Mu Frank W, Roberts David M, Peifer Mark

摘要

To ensure the accurate transmission of genetic material, chromosome segregation must occur with extremely high fidelity. Segregation errors lead to chromosomal instability (CIN), with deleterious consequences. Mutations in the tumor suppressor adenomatous polyposis coli (APC) initiate most colon cancers and have also been suggested to promote disease progression through increased CIN, but the mechanistic role of APC in preventing CIN remains controversial. Using fly embryos as a model, we investigated the role of APC proteins in CIN. Our findings suggest that APC2 loss leads to increased rates of chromosome segregation error. This occurs through a cascade of events beginning with incomplete centrosome separation leading to failure to inhibit formation of ectopic cleavage furrows, which result in mitotic defects and DNA damage. We test several hypotheses related to the mechanism of action of APC2, revealing that APC2 functions at the embryonic cortex with several protein partners, including Axin, to promote mitotic fidelity. Our in vivo data demonstrate that APC2 protects genome stability by modulating mitotic fidelity through regulation of the cytoskeleton.

关键词
APC Axin Chromosome segregation Cytoskeleton Drosophila Genome stability
文献信息
期刊
Development (Cambridge, England)
期刊简称
Development
发表日期
2013-12-11
收录日期
2013-10-02
更新日期
2016-10-19
语言
英语
国家/地区
England
NLM ID
8701744
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