XRCC1 mutation is associated with PARP1 hyperactivation and cerebellar ataxia

被引:206
作者
Hoch, Nicolas C. [1 ,2 ]
Hanzlikova, Hana [1 ]
Rulten, Stuart L. [1 ]
Tetreault, Martine [3 ,4 ]
Komulainen, Emilia [1 ]
Ju, Limei [1 ]
Hornyak, Peter [1 ]
Zeng, Zhihong [1 ]
Gittens, William [1 ]
Rey, Stephanie A. [5 ]
Staras, Kevin [5 ]
Mancini, Grazia M. S. [6 ]
McKinnon, Peter J. [7 ]
Wang, Zhao-Qi [8 ]
Wagner, Justin D. [9 ]
Yoon, Grace [10 ,11 ]
Caldecott, Keith W. [1 ]
机构
[1] Univ Sussex, Genome Damage & Stabil Ctr, Sch Life Sci, Brighton BN1 9RH, E Sussex, England
[2] Minist Educ Brazil, CAPES Fdn, BR-70040020 Brasilia, DF, Brazil
[3] McGill Univ, Dept Human Genet, Montreal, PQ H3A OG4, Canada
[4] Genome Quebec Innovat Ctr, Montreal, PQ H3A OG4, Canada
[5] Univ Sussex, Sch Life Sci, Neurosci, Brighton BN1 9QG, E Sussex, England
[6] Erasmus MC, Dept Clin Genet, POB 2040, NL-3000 CA Rotterdam, Netherlands
[7] St Jude Childrens Res Hosp, Memphis, TN 38105 USA
[8] Fritz Lipmann Inst, Leibniz Inst Age Res, Jena, Germany
[9] Childrens Hosp, Eastern Ontario Res Inst, Ottawa, ON K1L 8H1, Canada
[10] Univ Toronto, Hosp Sick Children, Div Clin & Metab Genet, Toronto, ON M5G 1X8, Canada
[11] Univ Toronto, Hosp Sick Children, Div Neurol, Toronto, ON M5G 1X8, Canada
基金
英国生物技术与生命科学研究理事会; 美国国家卫生研究院; 加拿大健康研究院;
关键词
STRAND BREAK REPAIR; BASE EXCISION-REPAIR; POLY(ADP-RIBOSE) POLYMERASE; SPINOCEREBELLAR ATAXIA; DNA; CELLS; GENE; REPLICATION; DISEASE; RATES;
D O I
10.1038/nature20790
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
XRCC1 is a molecular scaffold protein that assembles multiprotein complexes involved in DNA single-strand break repair(1,2). Here we show that biallelic mutations in the human XRCC1 gene are associated with ocular motor apraxia, axonal neuropathy, and progressive cerebellar ataxia. Cells from a patient with mutations in XRCC1 exhibited not only reduced rates of single-strand break repair but also elevated levels of protein ADP-ribosylation. This latter phenotype is recapitulated in a related syndrome caused by mutations in the XRCC1 partner protein PNKP3-5 and implicates hyperactivation of poly(ADP-ribose) polymerase/s as a cause of cerebellar ataxia. Indeed, remarkably, genetic deletion of Parp1 rescued normal cerebellar ADP-ribose levels and reduced the loss of cerebellar neurons and ataxia in Xrcc1-defective mice, identifying a molecular mechanism by which endogenous single-strand breaks trigger neuropathology. Collectively, these data establish the importance of XRCC1 protein complexes for normal neurological function and identify PARP1 as a therapeutic target in DNA strand break repair-defective disease.
引用
收藏
页码:87 / +
页数:17
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