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与过复制相关的DNA损伤相关的大规模异染色质重塑。

Large-scale heterochromatin remodeling linked to overreplication-associated DNA damage.

作者信息

Feng Wei, Hale Christopher J, Over Ryan S, Cokus Shawn J, Jacobsen Steven E, Michaels Scott D

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405.

Department of Molecular, Cell and Developmental Biology, University of California, Los Angeles, CA 90095.

出版信息

Proc Natl Acad Sci U S A. 2017 Jan 10;114(2):406-411. doi: 10.1073/pnas.1619774114. Epub 2016 Dec 27.

Abstract

Previously, we have shown that loss of the histone 3 lysine 27 (H3K27) monomethyltransferases ARABIDOPSIS TRITHORAX-RELATED 5 (ATXR5) and ATXR6 (ATXR6) results in the overreplication of heterochromatin. Here we show that the overreplication results in DNA damage and extensive chromocenter remodeling into unique structures we have named "overreplication-associated centers" (RACs). RACs have a highly ordered structure with an outer layer of condensed heterochromatin, an inner layer enriched in the histone variant H2AX, and a low-density core containing foci of phosphorylated H2AX (a marker of double-strand breaks) and the DNA-repair enzyme RAD51. atxr5,6 mutants are strongly affected by mutations in DNA repair, such as ATM and ATR. Because of its dense packaging and repetitive DNA sequence, heterochromatin is a challenging environment in which to repair DNA damage. Previous work in animals has shown that heterochromatic breaks are translocated out of the heterochromatic domain for repair. Our results show that atxr5,6 mutants use a variation on this strategy for repairing heterochromatic DNA damage. Rather than being moved to adjacent euchromatic regions, as in animals, heterochromatin undergoes large-scale remodeling to create a compartment with low chromatin density.

摘要

此前,我们已经表明,组蛋白3赖氨酸27(H3K27)单甲基转移酶拟南芥三胸相关蛋白5(ATXR5)和ATXR6(ATXR6)的缺失会导致异染色质的过度复制。在此我们表明,这种过度复制会导致DNA损伤,并使着丝粒大规模重塑为我们命名为“过度复制相关中心”(RACs)的独特结构。RACs具有高度有序的结构,其外层是浓缩的异染色质,内层富含组蛋白变体H2AX,还有一个低密度核心,其中含有磷酸化H2AX(双链断裂的标志物)和DNA修复酶RAD51的聚集点。atxr5,6突变体受到DNA修复相关突变(如ATM和ATR)的强烈影响。由于异染色质的紧密包装和重复的DNA序列,它是一个修复DNA损伤具有挑战性的环境。先前在动物中的研究表明,异染色质断裂会转移到异染色质结构域外进行修复。我们的结果表明,atxr5,6突变体在修复异染色质DNA损伤时采用了这种策略的变体。与动物不同的是,异染色质不是转移到相邻的常染色质区域,而是经历大规模重塑以创建一个染色质密度低的区室。

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