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SLX4有助于端粒的保存以及端粒连接分子中间体的调控加工。

SLX4 contributes to telomere preservation and regulated processing of telomeric joint molecule intermediates.

作者信息

Sarkar Jaya, Wan Bingbing, Yin Jinhu, Vallabhaneni Haritha, Horvath Kent, Kulikowicz Tomasz, Bohr Vilhelm A, Zhang Yanbin, Lei Ming, Liu Yie

机构信息

Laboratory of Molecular Gerontology, National Institute on Aging/National Institute of Health, 251 Bayview Blvd, Baltimore, MD 21224, USA.

National Center for Protein Science Shanghai, State Key Laboratory of Molecular Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 333 Haike Road, Shanghai 200031, China Department of Biological Chemistry, University of Michigan Medical School, 1150 W. Medical Center Drive, Ann Arbor, MI 48109, USA.

出版信息

Nucleic Acids Res. 2015 Jul 13;43(12):5912-23. doi: 10.1093/nar/gkv522. Epub 2015 May 18.

Abstract

SLX4 assembles a toolkit of endonucleases SLX1, MUS81 and XPF, which is recruited to telomeres via direct interaction of SLX4 with TRF2. Telomeres present an inherent obstacle for DNA replication and repair due to their high propensity to form branched DNA intermediates. Here we provide novel insight into the mechanism and regulation of the SLX4 complex in telomere preservation. SLX4 associates with telomeres throughout the cell cycle, peaking in late S phase and under genotoxic stress. Disruption of SLX4's interaction with TRF2 or SLX1 and SLX1's nuclease activity independently causes telomere fragility, suggesting a requirement of the SLX4 complex for nucleolytic resolution of branched intermediates during telomere replication. Indeed, the SLX1-SLX4 complex processes a variety of telomeric joint molecules in vitro. The nucleolytic activity of SLX1-SLX4 is negatively regulated by telomeric DNA-binding proteins TRF1 and TRF2 and is suppressed by the RecQ helicase BLM in vitro. In vivo, in the presence of functional BLM, telomeric circle formation and telomere sister chromatid exchange, both arising out of nucleolytic processing of telomeric homologous recombination intermediates, are suppressed. We propose that the SLX4-toolkit is a telomere accessory complex that, in conjunction with other telomere maintenance proteins, ensures unhindered, but regulated telomere maintenance.

摘要

SLX4组装了一个由核酸内切酶SLX1、MUS81和XPF组成的工具包,该工具包通过SLX4与TRF2的直接相互作用被招募到端粒。由于端粒极易形成分支DNA中间体,因此它们对DNA复制和修复构成了内在障碍。在这里,我们对SLX4复合物在端粒维持中的机制和调控提供了新的见解。SLX4在整个细胞周期中都与端粒相关联,在S期后期和基因毒性应激下达到峰值。SLX4与TRF2或SLX1的相互作用破坏以及SLX1的核酸酶活性独立导致端粒脆弱,这表明在端粒复制过程中,SLX4复合物对于分支中间体的核酸分解是必需的。事实上,SLX1 - SLX4复合物在体外处理多种端粒连接分子。SLX1 - SLX4的核酸分解活性受到端粒DNA结合蛋白TRF1和TRF2的负调控,并在体外被RecQ解旋酶BLM抑制。在体内,在功能性BLM存在的情况下,由端粒同源重组中间体的核酸分解加工产生的端粒环形成和端粒姐妹染色单体交换均受到抑制。我们提出,SLX4工具包是一种端粒辅助复合物,它与其他端粒维持蛋白一起,确保端粒维持不受阻碍但受到调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e44f/4499145/7229accc04a7/gkv522fig1.jpg

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