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PMID: 11934988 已发表 · ppublish 英语

Genomic instability in mice lacking histone H2AX.

Science (New York, N.Y.) ·第 296 卷 ·第 5569 期 ·2002-05-30

Celeste Arkady, Petersen Simone, Romanienko Peter J, Fernandez-Capetillo Oscar, Chen Hua Tang, Sedelnikova Olga A, Reina-San-Martin Bernardo, Coppola Vincenzo, Meffre Eric, Difilippantonio Michael J, Redon Christophe, Pilch Duane R, Olaru Alexandru, Eckhaus Michael, Camerini-Otero R Daniel, Tessarollo Lino, Livak Ferenc, Manova Katia, Bonner William M, Nussenzweig Michel C, Nussenzweig André

摘要

Higher order chromatin structure presents a barrier to the recognition and repair of DNA damage. Double-strand breaks (DSBs) induce histone H2AX phosphorylation, which is associated with the recruitment of repair factors to damaged DNA. To help clarify the physiological role of H2AX, we targeted H2AX in mice. Although H2AX is not essential for irradiation-induced cell-cycle checkpoints, H2AX-/- mice were radiation sensitive, growth retarded, and immune deficient, and mutant males were infertile. These pleiotropic phenotypes were associated with chromosomal instability, repair defects, and impaired recruitment of Nbs1, 53bp1, and Brca1, but not Rad51, to irradiation-induced foci. Thus, H2AX is critical for facilitating the assembly of specific DNA-repair complexes on damaged DNA.

文献信息
期刊
Science (New York, N.Y.)
期刊简称
Science
发表日期
2002-05-30
收录日期
2002-05-03
更新日期
2016-10-25
语言
英语
国家/地区
United States
NLM ID
0404511
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