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应激和衰老的鼠细胞中 CENP-A 染色质的解体。

CENP-A chromatin disassembly in stressed and senescent murine cells.

机构信息

Université Paris Diderot, Sorbonne Paris Cité, Epigenetics and Cell Fate, CNRS UMR7216, 75205 Paris cedex, France.

出版信息

Sci Rep. 2017 Feb 10;7:42520. doi: 10.1038/srep42520.

Abstract

Centromeres are chromosomal domains essential for genomic stability. We report here the remarkable transcriptional and epigenetic perturbations at murine centromeres in genotoxic stress conditions. A strong and selective transcriptional activation of centromeric repeats is detected within hours. This is followed by disorganization of centromeres with striking delocalization of nucleosomal CENP-A, the key determinant of centromere identity and function, in a mechanism requiring active transcription of centromeric repeats, the DNA Damage Response (DDR) effector ATM and chromatin remodelers/histone chaperones. In the absence of p53 checkpoint, activated transcription of centromeric repeats and CENP-A delocalization do not occur and cells accumulate micronuclei indicative of genomic instability. In addition, activated transcription and loss of centromeres identity are features of permanently arrested senescent cells with persistent DDR activation. Together, these findings bring out cooperation between DDR effectors and loss of centromere integrity as a safeguard mechanism to prevent genomic instability in context of persistent DNA damage signalling.

摘要

着丝粒是基因组稳定性所必需的染色体结构域。我们在此报告在遗传毒性应激条件下,鼠类着丝粒的显著转录和表观遗传扰动。在数小时内,检测到强烈而选择性的着丝粒重复转录激活。随后,着丝粒发生解聚,核小体 CENP-A 明显定位缺失,CENP-A 是着丝粒身份和功能的关键决定因素,该机制需要着丝粒重复的转录激活、DNA 损伤反应 (DDR) 效应物 ATM 和染色质重塑剂/组蛋白伴侣。在没有 p53 检查点的情况下,着丝粒重复的激活转录和 CENP-A 定位缺失不会发生,并且细胞积累微核,表明基因组不稳定。此外,激活转录和着丝粒身份的丧失是永久性停滞衰老细胞的特征,这些细胞持续激活 DDR。总之,这些发现表明 DDR 效应物与着丝粒完整性的丧失之间存在合作,作为一种保护机制,以防止持续的 DNA 损伤信号下的基因组不稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d64/5301216/7c732dae6dc8/srep42520-f1.jpg

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