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端粒染色体外环状结构的扩增与定量分析

Amplification and Quantitation of Telomeric Extrachromosomal Circles.

作者信息

Robinson Nathaniel J, Schiemann William P

机构信息

Department of Neurobiology, University of Alabama at Birmingham, Birmingham, AL 35233, USA.

Department of Biochemistry, Case Western Reserve University School of Medicine, Cleveland, OH 44106, USA.

出版信息

Bio Protoc. 2023 Mar 5;13(5):e4627. doi: 10.21769/BioProtoc.4627.

DOI:10.21769/BioProtoc.4627
PMID:36908640
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9993076/
Abstract

Telomeres are structures that cap the ends of linear chromosomes and play critical roles in maintaining genome integrity and establishing the replicative lifespan of cells. In stem and cancer cells, telomeres are actively elongated by either telomerase or the alternative lengthening of telomeres (ALT) pathway. This pathway is characterized by several hallmark features, including extrachromosomal C-rich circular DNAs that can be probed to assess ALT activity. These so-called C-circles are the product of ALT-associated DNA damage repair processes and simultaneously serve as potential templates for iterative telomere extension. This bifunctional nature makes C-circles highly sensitive and specific markers of ALT. Here, we describe a C-circle assay, adapted from previous reports, that enables the quantitation of C-circle abundance in mammalian cells subjected to a wide range of experimental perturbations. This protocol combines the Quick C-circle Preparation (QCP) method for DNA isolation with fluorometry-based DNA quantification, rolling circle amplification (RCA), and detection of C-circles using quantitative PCR. Moreover, the inclusion of internal standards with well-characterized telomere maintenance mechanisms (TMMs) allows for the reliable benchmarking of cells with unknown TMM status. Overall, our work builds upon existing protocols to create a generalizable workflow for in vitro C-circle quantitation and ascertainment of TMM identity.

摘要

端粒是位于线性染色体末端的结构,在维持基因组完整性和确定细胞的复制寿命方面发挥着关键作用。在干细胞和癌细胞中,端粒可通过端粒酶或端粒替代延长(ALT)途径被积极延长。该途径具有几个标志性特征,包括可以通过检测来评估ALT活性的染色体外富含C的环状DNA。这些所谓的C环是ALT相关DNA损伤修复过程的产物,同时作为端粒迭代延长的潜在模板。这种双功能特性使C环成为ALT高度敏感和特异的标志物。在此,我们描述了一种基于先前报道改编的C环检测方法,该方法能够对受到广泛实验扰动的哺乳动物细胞中的C环丰度进行定量。该方案将用于DNA分离的快速C环制备(QCP)方法与基于荧光法的DNA定量、滚环扩增(RCA)以及使用定量PCR检测C环相结合。此外,纳入具有明确端粒维持机制(TMM)的内标,可以对TMM状态未知的细胞进行可靠的基准测试。总体而言,我们的工作在现有方案的基础上,创建了一个可推广的体外C环定量和TMM身份确定的工作流程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/647d/9993076/d0b8f46d0ac9/BioProtoc-13-05-4627-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/647d/9993076/91d4b65f9fdd/BioProtoc-13-05-4627-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/647d/9993076/d0b8f46d0ac9/BioProtoc-13-05-4627-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/647d/9993076/91d4b65f9fdd/BioProtoc-13-05-4627-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/647d/9993076/d0b8f46d0ac9/BioProtoc-13-05-4627-g002.jpg

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本文引用的文献

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SLX4IP promotes RAP1 SUMOylation by PIAS1 to coordinate telomere maintenance through NF-κB and Notch signaling.SLX4IP 通过 PIAS1 促进 RAP1 的 SUMO 化,通过 NF-κB 和 Notch 信号协调端粒维持。
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