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PMID: 24553124 已发表 · ppublish 英语

ATM controls proper mitotic spindle structure.

Cell cycle (Georgetown, Tex.) ·第 13 卷 ·第 7 期 ·2016-05-09

Palazzo Luca, Della Monica Rosa, Visconti Roberta, Costanzo Vincenzo, Grieco Domenico

摘要

The recessive ataxia-telangiectasia (A-T) syndrome is characterized by cerebellar degeneration, immunodeficiency, cancer susceptibility, premature aging, and insulin-resistant diabetes and is caused by loss of function of the ATM kinase, a member of the phosphoinositide 3-kinase-like protein kinases (PIKKs) family. ATM plays a crucial role in the DNA damage response (DDR); however, the complexity of A-T features suggests that ATM may regulate other cellular functions. Here we show that ATM affects proper bipolar mitotic spindle structure independently of DNA damage. In addition, we find that in mitosis ATM forms a complex with the poly(ADP)ribose (PAR) polymerase Tankyrase (TNKS) 1, the spindle pole protein NuMA1, and breast cancer susceptibility protein BRCA1, another crucial DDR player. Our evidence indicates that the complex is required for efficient poly(ADP)ribosylation of NuMA1. We find further that a mutant NuMA1 version, non-phosphorylatable at potential ATM-dependent phosphorylation sites, is poorly PARylated and induces loss of spindle bipolarity. Our findings may help to explain crucial A-T features and provide further mechanistic rationale for TNKS inhibition in cancer therapy.

关键词
ATM BRCA1 NuMA1 Tankyrase1 poly(ADP)ribosylation spindle structure
文献信息
期刊
Cell cycle (Georgetown, Tex.)
期刊简称
Cell Cycle
发表日期
2016-05-09
收录日期
2014-04-01
更新日期
2015-04-01
语言
英语
国家/地区
United States
NLM ID
101137841
分析服务
分析服务

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