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PMID: 15744309 已发表 · ppublish 英语

Defective DNA single-strand break repair in spinocerebellar ataxia with axonal neuropathy-1.

Nature ·第 434 卷 ·第 7029 期 ·2005-03-09

El-Khamisy Sherif F, Saifi Gulam M, Weinfeld Michael, Johansson Fredrik, Helleday Thomas, Lupski James R, Caldecott Keith W

摘要

Spinocerebellar ataxia with axonal neuropathy-1 (SCAN1) is a neurodegenerative disease that results from mutation of tyrosyl phosphodiesterase 1 (TDP1). In lower eukaryotes, Tdp1 removes topoisomerase 1 (top1) peptide from DNA termini during the repair of double-strand breaks created by collision of replication forks with top1 cleavage complexes in proliferating cells. Although TDP1 most probably fulfils a similar function in human cells, this role is unlikely to account for the clinical phenotype of SCAN1, which is associated with progressive degeneration of post-mitotic neurons. In addition, this role is redundant in lower eukaryotes, and Tdp1 mutations alone confer little phenotype. Moreover, defects in processing or preventing double-strand breaks during DNA replication are most probably associated with increased genetic instability and cancer, phenotypes not observed in SCAN1 (ref. 8). Here we show that in human cells TDP1 is required for repair of chromosomal single-strand breaks arising independently of DNA replication from abortive top1 activity or oxidative stress. We report that TDP1 is sequestered into multi-protein single-strand break repair (SSBR) complexes by direct interaction with DNA ligase IIIalpha and that these complexes are catalytically inactive in SCAN1 cells. These data identify a defect in SSBR in a neurodegenerative disease, and implicate this process in the maintenance of genetic integrity in post-mitotic neurons.

文献信息
期刊
Nature
期刊简称
Nature
发表日期
2005-03-09
收录日期
2005-03-03
更新日期
2016-11-24
语言
英语
国家/地区
England
NLM ID
0410462
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