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Telomere Maintenance Pathway Activity Analysis Enables Tissue- and Gene-Level Inferences.端粒维持途径活性分析有助于进行组织和基因水平的推断。
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SLX4-XPF mediates DNA damage responses to replication stress induced by DNA-protein interactions.SLX4-XPF 介导由 DNA-蛋白相互作用诱导的复制应激的 DNA 损伤反应。
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RAD52 and SLX4 act nonepistatically to ensure telomere stability during alternative telomere lengthening.RAD52 和 SLX4 非协同作用以确保替代性端粒延长过程中端粒的稳定性。
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本文引用的文献

1
Alternative Lengthening of Telomeres Mediated by Mitotic DNA Synthesis Engages Break-Induced Replication Processes.有丝分裂DNA合成介导的端粒替代延长参与了断裂诱导的复制过程。
Mol Cell Biol. 2017 Sep 26;37(20). doi: 10.1128/MCB.00226-17. Print 2017 Oct 15.
2
Analysis of Telomere Proteins by Chromatin Immunoprecipitation (ChIP).通过染色质免疫沉淀法(ChIP)分析端粒蛋白
Methods Mol Biol. 2017;1587:205-214. doi: 10.1007/978-1-4939-6892-3_19.
3
Mammalian RAD52 Functions in Break-Induced Replication Repair of Collapsed DNA Replication Forks.哺乳动物RAD52在DNA复制叉坍塌的断裂诱导复制修复中发挥作用。
Mol Cell. 2016 Dec 15;64(6):1127-1134. doi: 10.1016/j.molcel.2016.10.038.
4
RAD52 Facilitates Mitotic DNA Synthesis Following Replication Stress.RAD52 促进复制压力后有丝分裂 DNA 合成。
Mol Cell. 2016 Dec 15;64(6):1117-1126. doi: 10.1016/j.molcel.2016.10.037.
5
Alternative lengthening of human telomeres is a conservative DNA replication process with features of break-induced replication.人类端粒的替代延长是一种保守的DNA复制过程,具有断裂诱导复制的特征。
EMBO Rep. 2016 Dec;17(12):1731-1737. doi: 10.15252/embr.201643169. Epub 2016 Oct 19.
6
Break-induced telomere synthesis underlies alternative telomere maintenance.断裂诱导的端粒合成是替代性端粒维持的基础。
Nature. 2016 Nov 3;539(7627):54-58. doi: 10.1038/nature20099. Epub 2016 Oct 19.
7
The C-Circle Assay for alternative-lengthening-of-telomeres activity.用于端粒替代延长活性的C环检测法。
Methods. 2017 Feb 1;114:74-84. doi: 10.1016/j.ymeth.2016.08.016. Epub 2016 Sep 3.
8
Comparative analysis of whole genome sequencing-based telomere length measurement techniques.基于全基因组测序的端粒长度测量技术的比较分析
Methods. 2017 Feb 1;114:4-15. doi: 10.1016/j.ymeth.2016.08.008. Epub 2016 Aug 24.
9
Noncanonical views of homology-directed DNA repair.同源重组介导的DNA修复的非经典观点。
Genes Dev. 2016 May 15;30(10):1138-54. doi: 10.1101/gad.280545.116.
10
The DNA fibre technique - tracking helicases at work.DNA纤维技术——追踪工作中的解旋酶。
Methods. 2016 Oct 1;108:92-8. doi: 10.1016/j.ymeth.2016.04.019. Epub 2016 Apr 18.

受损端粒同源定向DNA修复的直接定量监测

Direct Quantitative Monitoring of Homology-Directed DNA Repair of Damaged Telomeres.

作者信息

Verma Priyanka, Dilley Robert L, Gyparaki Melina T, Greenberg Roger A

机构信息

Basser Research Center for BRCA, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, United States.

Basser Research Center for BRCA, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, United States.

出版信息

Methods Enzymol. 2018;600:107-134. doi: 10.1016/bs.mie.2017.11.010. Epub 2018 Feb 1.

DOI:10.1016/bs.mie.2017.11.010
PMID:29458755
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6373480/
Abstract

Homology-directed DNA repair (HDR) is an evolutionary conserved mechanism that is required for genome integrity and organismal fitness across species. While a myriad of different factors and mechanisms are able to execute HDR, all forms necessitate common steps of DNA damage recognition, homology search and capture, and assembly of a DNA polymerase complex to conduct templated DNA synthesis. The central question of what determines HDR mechanism utilization in mammalian cells has been limited by an inability to directly monitor the DNA damage response and products of repair as they arise from a defined genomic lesion. In this chapter, we describe several methodologies to delineate major steps of HDR during alternative lengthening of telomeres in human cells. This includes procedures to visualize interchromosomal telomere homology searches in real time and quantitatively detect HDR synthesis of nascent telomeres emanating from synchronous activation of telomere DNA double-strand breaks. We highlight the critical details of these methods and their applicability to monitoring HDR at telomeres in a broad variety of mammalian cell types.

摘要

同源定向DNA修复(HDR)是一种进化上保守的机制,对物种间的基因组完整性和生物体适应性至关重要。虽然无数不同的因素和机制能够执行HDR,但所有形式都需要DNA损伤识别、同源性搜索和捕获以及组装DNA聚合酶复合物以进行模板化DNA合成等共同步骤。关于在哺乳动物细胞中决定HDR机制利用的核心问题,一直受到无法直接监测DNA损伤反应以及修复产物(因为它们源自特定的基因组损伤)的限制。在本章中,我们描述了几种方法来描绘人类细胞端粒替代延长过程中HDR的主要步骤。这包括实时可视化染色体间端粒同源性搜索以及定量检测源自端粒DNA双链断裂同步激活的新生端粒的HDR合成的程序。我们强调了这些方法的关键细节及其在监测多种哺乳动物细胞类型中端粒HDR方面的适用性。