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RNF146的WWE结构域的过表达调节DNA损伤位点处的聚(ADP)核糖动力学。

Overexpression of the WWE domain of RNF146 modulates poly-(ADP)-ribose dynamics at sites of DNA damage.

作者信息

Al-Rahahleh Rasha Q, Roos Wynand P, Saville Kate M, Andrews Joel F, Wu Zhijin, Koczor Christopher A, Prakash Aishwarya, Sobol Robert W

机构信息

Department of Pathology and Laboratory Medicine, Warren Alpert Medical School & Legorreta Cancer Center, Brown University, Providence, RI 02912, USA; Department of Pharmacology & Mitchell Cancer Institute, College of Medicine, University of South Alabama, Mobile, AL 36604, USA.

Department of Pathology and Laboratory Medicine, Warren Alpert Medical School & Legorreta Cancer Center, Brown University, Providence, RI 02912, USA.

出版信息

DNA Repair (Amst). 2025 Jun;150:103845. doi: 10.1016/j.dnarep.2025.103845. Epub 2025 May 21.

Abstract

Protein poly-ADP-ribosylation (PARylation) is a post-translational modification formed by transferring successive units of ADP-ribose to target proteins to form poly-ADP-ribose (PAR) chains. PAR plays a critical role in the DNA damage response (DDR) by acting as a signaling platform to promote the recruitment of DNA repair factors to the sites of DNA damage that bind via their PAR-binding domains (PBDs). Several classes of PBD families have been identified, which recognize distinct parts of the PAR chain. Proteins encoding PBDs play an essential role in conveying the PAR-mediated signal through their interaction with PAR chains, which mediates many cellular functions, including the DDR. The WWE domain, encoded in 12 human proteins, identifies the iso-ADP-ribose moiety of the PAR chain. PARylation is a heterogeneous structure that is highly dynamic in cells. Capturing the dynamics of PARylation is essential to understanding its role in the DDR, which can be achieved by expanding the tool kit for PAR detection and tracking mediated by the unique binding capability of various sensors. We recently described the WWE domain of RNF146 as a robust genetically encoded probe, when fused to EGFP, for the detection of PAR in live cells. Expanding on this, we used structural prediction tools to evaluate all of the WWE domains encoded in human proteins, evaluating each as molecular PAR probes in live cells. We demonstrate unique PAR dynamics when tracked by WWE-encoded PAR binding domains, in addition to an engineered macrodomain, that can be exploited for modulation of the PAR-dependent DNA damage response.

摘要

蛋白质多聚 ADP - 核糖基化(PARylation)是一种翻译后修饰,通过将连续的 ADP - 核糖单元转移到靶蛋白上形成多聚 ADP - 核糖(PAR)链。PAR 在 DNA 损伤反应(DDR)中起着关键作用,它作为一个信号平台,促进 DNA 修复因子通过其 PAR 结合域(PBD)募集到 DNA 损伤位点。已鉴定出几类 PBD 家族,它们识别 PAR 链的不同部分。编码 PBD 的蛋白质在通过与 PAR 链相互作用传递 PAR 介导的信号中起重要作用,这介导了包括 DDR 在内的许多细胞功能。在 12 种人类蛋白质中编码的 WWE 结构域可识别 PAR 链的异戊二烯 - ADP - 核糖部分。PARylation 是一种在细胞中高度动态的异质结构。捕捉 PARylation 的动态对于理解其在 DDR 中的作用至关重要,这可以通过扩展用于检测和跟踪由各种传感器独特结合能力介导的 PARylation 的工具包来实现。我们最近将 RNF146 的 WWE 结构域描述为一种强大的基因编码探针,当与增强型绿色荧光蛋白(EGFP)融合时,可用于在活细胞中检测 PAR。在此基础上,我们使用结构预测工具评估人类蛋白质中编码的所有 WWE 结构域,将每个结构域评估为活细胞中的分子 PAR 探针。除了一个工程化的宏观结构域外,当通过 WWE 编码的 PAR 结合域进行跟踪时,我们展示了独特的 PAR 动态,可用于调节 PAR 依赖性 DNA 损伤反应。

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