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DNA 损伤后的转录恢复需要 H3.3 组蛋白伴侣 HIRA 对染色质进行初始修饰。

Transcription recovery after DNA damage requires chromatin priming by the H3.3 histone chaperone HIRA.

机构信息

Chromatin Dynamics, Institut Curie Research Centre, 75248 Paris Cedex 5, France; Centre National de la Recherche Scientifique, Unité Mixte de Recherche 218, 75248 Paris Cedex 5, France.

出版信息

Cell. 2013 Sep 26;155(1):94-106. doi: 10.1016/j.cell.2013.08.029.

Abstract

Understanding how to recover fully functional and transcriptionally active chromatin when its integrity has been challenged by genotoxic stress is a critical issue. Here, by investigating how chromatin dynamics regulate transcriptional activity in response to DNA damage in human cells, we identify a pathway involving the histone chaperone histone regulator A (HIRA) to promote transcription restart after UVC damage. Our mechanistic studies reveal that HIRA accumulates at sites of UVC irradiation upon detection of DNA damage prior to repair and deposits newly synthesized H3.3 histones. This local action of HIRA depends on ubiquitylation events associated with damage recognition. Furthermore, we demonstrate that the early and transient function of HIRA in response to DNA damage primes chromatin for later reactivation of transcription. We propose that HIRA-dependent histone deposition serves as a chromatin bookmarking system to facilitate transcription recovery after genotoxic stress.

摘要

了解如何在基因组毒性应激挑战其完整性后,完全恢复功能和转录活性染色质是一个关键问题。在这里,我们通过研究染色质动力学如何响应人类细胞中的 DNA 损伤调节转录活性,确定了一条涉及组蛋白伴侣组蛋白调节因子 A(HIRA)的途径,以促进 UVC 损伤后的转录重新启动。我们的机制研究表明,HIRA 在检测到 DNA 损伤后会在 UVC 照射部位积累,然后在修复之前沉积新合成的 H3.3 组蛋白。HIRA 的这种局部作用依赖于与损伤识别相关的泛素化事件。此外,我们证明 HIRA 在应对 DNA 损伤时的早期和短暂功能为染色质的后期转录重新激活做好了准备。我们提出,HIRA 依赖性组蛋白沉积可作为染色质书签系统,以促进基因组毒性应激后的转录恢复。

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