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人类 RTEL1 与 Poldip3 结合,以促进对复制应激和 R 环解析的反应。

Human RTEL1 associates with Poldip3 to facilitate responses to replication stress and R-loop resolution.

机构信息

Division of Genome Biology, Department of Medical Biochemistry and Biophysics, Science for Life Laboratory, Karolinska Institute, Solna 171 77, Sweden.

Department of Cell Biology and Physiology, University of Copenhagen, DK-2100 Copenhagen, Denmark.

出版信息

Genes Dev. 2020 Aug 1;34(15-16):1065-1074. doi: 10.1101/gad.330050.119. Epub 2020 Jun 19.

Abstract

RTEL1 helicase is a component of DNA repair and telomere maintenance machineries. While RTEL1's role in DNA replication is emerging, how RTEL1 preserves genomic stability during replication remains elusive. Here we used a range of proteomic, biochemical, cell, and molecular biology and gene editing approaches to provide further insights into potential role(s) of RTEL1 in DNA replication and genome integrity maintenance. Our results from complementary human cell culture models established that RTEL1 and the Polδ subunit Poldip3 form a complex and are/function mutually dependent in chromatin binding after replication stress. Loss of RTEL1 and Poldip3 leads to marked R-loop accumulation that is confined to sites of active replication, enhances endogenous replication stress, and fuels ensuing genomic instability. The impact of depleting RTEL1 and Poldip3 is epistatic, consistent with our proposed concept of these two proteins operating in a shared pathway involved in DNA replication control under stress conditions. Overall, our data highlight a previously unsuspected role of RTEL1 and Poldip3 in R-loop suppression at genomic regions where transcription and replication intersect, with implications for human diseases including cancer.

摘要

RTEL1 解旋酶是 DNA 修复和端粒维持机制的一个组成部分。虽然 RTEL1 在 DNA 复制中的作用正在显现,但 RTEL1 如何在复制过程中保持基因组稳定性仍然难以捉摸。在这里,我们使用一系列蛋白质组学、生化、细胞和分子生物学以及基因编辑方法,进一步深入了解 RTEL1 在 DNA 复制和基因组完整性维持中的潜在作用。我们从互补的人类细胞培养模型中获得的结果表明,RTEL1 和 Polδ 亚基 Poldip3 形成复合物,并在复制应激后在染色质结合中相互依赖/发挥功能。RTEL1 和 Poldip3 的缺失会导致明显的 R 环积累,这些 R 环局限于活跃复制的部位,增强内源性复制应激,并引发随后的基因组不稳定性。耗尽 RTEL1 和 Poldip3 的影响是上位性的,与我们提出的概念一致,即这两种蛋白质在一个共享途径中发挥作用,该途径涉及应激条件下的 DNA 复制控制。总的来说,我们的数据强调了 RTEL1 和 Poldip3 在转录和复制交叉的基因组区域抑制 R 环方面的先前未被怀疑的作用,这对包括癌症在内的人类疾病具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4819/7397856/78773674dcfa/1065f01.jpg

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