Cansu Kose, Laura A Lindsey-Boltz, Aziz Sancar, Yuchao Jiang
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引用次数: 0
摘要
多细胞生物体基因组中的大块 DNA 加合物(如紫外线诱导的加合物)是通过核苷酸切除修复清除的,这种修复通过两种不同的机制进行,一种是需要 DNA 损伤识别因子 XPC(色素性红斑互补症 C 组)的全局修复,另一种是不需要的转录耦合修复(TCR)。当延伸的 RNA 聚合酶 II 遇到 DNA 损伤时,TCR 就会启动,因此,分析仅通过 TCR 进行修复的 XPC 突变体中的全基因组切除修复,为绘制依赖于捕获 RNA 转录产物的方法所遗漏的转录事件提供了一个独特的机会,这些转录事件因其稳定性和/或修饰(5'-加帽或 3'-多腺苷酸化)而受到限制。在这里,我们在模式生物秀丽隐杆线虫(Caenorhabditis elegans)中进行了eXcision修复测序(XR-sequq),在具有正常切除修复功能的野生型品系、缺乏TCR的品系(csb-1)和仅通过TCR进行修复的品系(xpc-1)中生成了全基因组修复图谱。对 xpc-1 XR-seq 修复图谱与 RNA 图谱数据集(RNA-seq、长和短盖 RNA-seq)之间的交叉点进行分析,揭示了以前未认识到的转录位点,进一步加深了我们对这一重要模式生物基因组的了解。
Genome-wide analysis of transcription-coupled repair reveals novel transcription events in Caenorhabditis elegans.
Bulky DNA adducts such as those induced by ultraviolet light are removed from the genomes of multicellular organisms by nucleotide excision repair, which occurs through two distinct mechanisms, global repair, requiring the DNA damage recognition-factor XPC (xeroderma pigmentosum complementation group C), and transcription-coupled repair (TCR), which does not. TCR is initiated when elongating RNA polymerase II encounters DNA damage, and thus analysis of genome-wide excision repair in XPC-mutants only repairing by TCR provides a unique opportunity to map transcription events missed by methods dependent on capturing RNA transcription products and thus limited by their stability and/or modifications (5'-capping or 3'-polyadenylation). Here, we have performed eXcision Repair-sequencing (XR-seq) in the model organism Caenorhabditis elegans to generate genome-wide repair maps in a wild-type strain with normal excision repair, a strain lacking TCR (csb-1), and a strain that only repairs by TCR (xpc-1). Analysis of the intersections between the xpc-1 XR-seq repair maps with RNA-mapping datasets (RNA-seq, long- and short-capped RNA-seq) reveal previously unrecognized sites of transcription and further enhance our understanding of the genome of this important model organism.
期刊介绍:
PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill).
Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.