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染色质重新组装标志着DNA修复的结束。

Chromatin reassembly signals the end of DNA repair.

作者信息

Chen Chin-Chuan, Tyler Jessica

机构信息

Department of Biochemistry and Molecular Genetics, University of Colorado School of Medicine, Denver, Colorado 80045, USA.

出版信息

Cell Cycle. 2008 Dec 15;7(24):3792-7. doi: 10.4161/cc.7.24.7188. Epub 2008 Dec 13.

Abstract

The packaging of the eukaryotic genome into chromatin provides a formidable obstacle to the machinery that mediates genomic processes such as transcription, repair and replication. The cell solves this accessibility problem during double-strand DNA repair by removing the histone proteins flanking the DNA lesion. Presumably then, the repaired DNA is subsequently reassembled into chromatin in order to allow the epigenetic information to be restored and to repackage and protect the genome. Our recent work has shown that chromatin is indeed reassembled following double-strand break repair in budding yeast. Furthermore, the assembly of the repaired DNA into chromatin is driven by acetylation within the globular domain of histone H3, on lysine 56 (H3 K56Ac). Unexpectedly, we also discovered that H3 K56Ac and chromatin assembly onto the repaired DNA is essential to turn off the DNA damage cell cycle checkpoint. This work demonstrates that reformation of the chromatin structure, not DNA repair per se, is the elusive signal that tells the cell when DNA repair is complete.

摘要

真核生物基因组包装成染色质,给介导诸如转录、修复和复制等基因组过程的机制带来了巨大障碍。细胞在双链DNA修复过程中,通过去除DNA损伤两侧的组蛋白来解决这种可及性问题。那么据推测,修复后的DNA随后会重新组装成染色质,以便恢复表观遗传信息,并重新包装和保护基因组。我们最近的研究表明,在芽殖酵母中,双链断裂修复后染色质确实会重新组装。此外,修复后的DNA组装成染色质是由组蛋白H3球状结构域内赖氨酸56处的乙酰化(H3 K56Ac)驱动的。出乎意料的是,我们还发现H3 K56Ac以及染色质在修复后的DNA上的组装对于关闭DNA损伤细胞周期检查点至关重要。这项工作表明,染色质结构的重塑,而非DNA修复本身,才是告知细胞DNA修复何时完成的难以捉摸的信号。

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