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活细胞中p53单分子结合受C末端乙酰化调控并与转录活性相关。

Live-cell p53 single-molecule binding is modulated by C-terminal acetylation and correlates with transcriptional activity.

作者信息

Loffreda Alessia, Jacchetti Emanuela, Antunes Sofia, Rainone Paolo, Daniele Tiziana, Morisaki Tatsuya, Bianchi Marco E, Tacchetti Carlo, Mazza Davide

机构信息

Istituto Scientifico Ospedale San Raffaele, Centro di Imaging Sperimentale, Milano, 20132, Italy.

Fondazione CEN, European Center for Nanomedicine, Milano, 20133, Italy.

出版信息

Nat Commun. 2017 Aug 22;8(1):313. doi: 10.1038/s41467-017-00398-7.

Abstract

Live-cell microscopy has highlighted that transcription factors bind transiently to chromatin but it is not clear if the duration of these binding interactions can be modulated in response to an activation stimulus, and if such modulation can be controlled by post-translational modifications of the transcription factor. We address this question for the tumor suppressor p53 by combining live-cell single-molecule microscopy and single cell in situ measurements of transcription and we show that p53-binding kinetics are modulated following genotoxic stress. The modulation of p53 residence times on chromatin requires C-terminal acetylation-a classical mark for transcriptionally active p53-and correlates with the induction of transcription of target genes such as CDKN1a. We propose a model in which the modification state of the transcription factor determines the coupling between transcription factor abundance and transcriptional activity by tuning the transcription factor residence time on target sites.Both transcription binding kinetics and post-translational modifications of transcription factors are thought to play a role in the modulation of transcription. Here the authors use single-molecule tracking to directly demonstrate that p53 acetylation modulates promoter residence time and transcriptional activity.

摘要

活细胞显微镜技术已突出显示转录因子与染色质的结合是瞬时的,但尚不清楚这些结合相互作用的持续时间是否可响应激活刺激而被调节,以及这种调节是否可由转录因子的翻译后修饰控制。我们通过结合活细胞单分子显微镜技术和转录的单细胞原位测量来研究肿瘤抑制因子p53的这一问题,结果表明在基因毒性应激后p53的结合动力学受到调节。p53在染色质上停留时间的调节需要C端乙酰化——转录活性p53的经典标记——并且与诸如CDKN1a等靶基因转录的诱导相关。我们提出了一个模型,其中转录因子的修饰状态通过调节转录因子在靶位点的停留时间来决定转录因子丰度与转录活性之间的耦合。转录结合动力学和转录因子的翻译后修饰都被认为在转录调节中起作用。本文作者使用单分子追踪直接证明p53乙酰化调节启动子停留时间和转录活性。

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