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从双链断裂识别到细胞周期检查点激活:高内涵和高分辨率图像细胞术揭示了 53BP1 在 DNA 损伤反应和 p53 作用中的多种角色。

From Double-Strand Break Recognition to Cell-Cycle Checkpoint Activation: High Content and Resolution Image Cytometry Unmasks 53BP1 Multiple Roles in DNA Damage Response and p53 Action.

机构信息

Department of Experimental Oncology, European Institute of Oncology IRCCS, 20139 Milan, Italy.

Department of Oncology and Hemato-Oncology, University of Milan, 20122 Milan, Italy.

出版信息

Int J Mol Sci. 2022 Sep 5;23(17):10193. doi: 10.3390/ijms231710193.

Abstract

53BP1 protein has been isolated in-vitro as a putative p53 interactor. From the discovery of its engagement in the DNA-Damage Response (DDR), its role in sustaining the activity of the p53-regulated transcriptional program has been frequently under-evaluated, even in the case of a specific response to numerous DNA Double-Strand Breaks (DSBs), i.e., exposure to ionizing radiation. The localization of 53BP1 protein constitutes a key to decipher the network of activities exerted in response to stress. We present here an automated-microscopy for image cytometry protocol to analyze the evolution of the DDR, and to demonstrate how 53BP1 moved from damaged sites, where the well-known interaction with the DSB marker γH2A.X takes place, to nucleoplasm, interacting with p53, and enhancing the transcriptional regulation of the guardian of the genome protein. Molecular interactions have been quantitatively described and spatiotemporally localized at the highest spatial resolution by a simultaneous analysis of the impairment of the cell-cycle progression. Thanks to the high statistical sampling of the presented protocol, we provide a detailed quantitative description of the molecular events following the DSBs formation. Single-Molecule Localization Microscopy (SMLM) Analysis finally confirmed the p53-53BP1 interaction on the tens of nanometers scale during the distinct phases of the response.

摘要

53BP1 蛋白已在体外被分离出来,被认为是 p53 的一种相互作用蛋白。从其参与 DNA 损伤反应(DDR)的发现开始,其在维持 p53 调节的转录程序活性方面的作用就经常被低估,即使是在对多种 DNA 双链断裂(DSBs)的特定反应的情况下,例如,暴露于电离辐射。53BP1 蛋白的定位构成了揭示应激反应中发挥的活动网络的关键。我们在这里提出了一种自动显微镜图像细胞计量学方案,用于分析 DDR 的演变,并展示 53BP1 蛋白如何从受损部位(与 DSB 标记物 γH2A.X 发生的众所周知的相互作用发生在那里)转移到核质,与 p53 相互作用,并增强基因组守护者蛋白的转录调控。通过同时分析细胞周期进程的损伤,对分子相互作用进行了定量描述和时空定位,达到了最高的空间分辨率。由于所提出方案的高统计采样,我们提供了 DSBs 形成后分子事件的详细定量描述。单分子定位显微镜(SMLM)分析最终在反应的不同阶段证实了 p53-53BP1 相互作用在数十纳米的尺度上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e5e/9456172/fc67e51f805c/ijms-23-10193-g001.jpg

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