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利用爪蟾卵提取物中的双链断裂介导的 ATR 激活(DMAX)系统分析 TOPBP1 在 ATR 信号中的结构-功能作用。

Structure-function analysis of TOPBP1's role in ATR signaling using the DSB-mediated ATR activation in Xenopus egg extracts (DMAX) system.

机构信息

Molecular and Computational Biology Section, Department of Biological Sciences, University of Southern California, Los Angeles, CA, 90089, USA.

Pharmacological Sciences PhD Program, University of California, Irvine, CA, 92697, USA.

出版信息

Sci Rep. 2021 Jan 11;11(1):467. doi: 10.1038/s41598-020-80626-1.

Abstract

The protein kinase ATR is activated at sites of DNA double-strand breaks where it plays important roles in promoting DNA end resection and regulating cell cycle progression. TOPBP1 is a multi BRCT repeat containing protein that activates ATR at DSBs. Here we have developed an experimental tool, the DMAX system, to study the biochemical mechanism for TOPBP1-mediated ATR signalling. DMAX combines simple, linear dsDNA molecules with Xenopus egg extracts and results in a physiologically relevant, DSB-induced activation of ATR. We find that DNAs of 5000 nucleotides, at femtomolar concentration, potently activate ATR in this system. By combining immunodepletion and add-back of TOPBP1 point mutants we use DMAX to determine which of TOPBP1's nine BRCT domains are required for recruitment of TOPBP1 to DSBs and which domains are needed for ATR-mediated phosphorylation of CHK1. We find that BRCT1 and BRCT7 are important for recruitment and that BRCT5 functions downstream of recruitment to promote ATR-mediated phosphorylation of CHK1. We also show that BRCT7 plays a second role, independent of recruitment, in promoting ATR signalling. These findings supply a new research tool for, and new insights into, ATR biology.

摘要

蛋白激酶 ATR 在 DNA 双链断裂处被激活,在促进 DNA 末端切除和调节细胞周期进程中发挥重要作用。TOPBP1 是一种含有多个 BRCT 重复序列的蛋白,可在 DSB 处激活 ATR。在这里,我们开发了一种实验工具,即 DMAX 系统,用于研究 TOPBP1 介导的 ATR 信号转导的生化机制。DMAX 将简单的线性 dsDNA 分子与非洲爪蟾卵提取物结合在一起,导致生理相关的 DSB 诱导 ATR 激活。我们发现,在该系统中,5000 个核苷酸的 DNA 在皮摩尔浓度下即可强烈激活 ATR。通过结合免疫沉淀和 TOPBP1 点突变体的添加回补,我们使用 DMAX 确定了 TOPBP1 的九个 BRCT 结构域中的哪一个对于 TOPBP1 招募到 DSB 是必需的,以及哪个结构域对于 ATR 介导的 CHK1 磷酸化是必需的。我们发现 BRCT1 和 BRCT7 对于招募是重要的,而 BRCT5 在招募下游发挥作用以促进 ATR 介导的 CHK1 磷酸化。我们还表明,BRCT7 在促进 ATR 信号转导中发挥了第二个独立于招募的作用。这些发现为 ATR 生物学提供了新的研究工具,并提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f245/7801695/c705437594e1/41598_2020_80626_Fig1_HTML.jpg

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