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CTCF-cohesin 介导的染色体构象调控 KSHV 潜伏和裂解基因的协调。

Coordination of KSHV latent and lytic gene control by CTCF-cohesin mediated chromosome conformation.

机构信息

The Wistar Institute, Philadelphia, Pennsylvania, United States of America.

出版信息

PLoS Pathog. 2011 Aug;7(8):e1002140. doi: 10.1371/journal.ppat.1002140. Epub 2011 Aug 18.

Abstract

Herpesvirus persistence requires a dynamic balance between latent and lytic cycle gene expression, but how this balance is maintained remains enigmatic. We have previously shown that the Kaposi's Sarcoma-Associated Herpesvirus (KSHV) major latency transcripts encoding LANA, vCyclin, vFLIP, v-miRNAs, and Kaposin are regulated, in part, by a chromatin organizing element that binds CTCF and cohesins. Using viral genome-wide chromatin conformation capture (3C) methods, we now show that KSHV latency control region is physically linked to the promoter regulatory region for ORF50, which encodes the KSHV immediate early protein RTA. Other linkages were also observed, including an interaction between the 5' and 3' end of the latency transcription cluster. Mutation of the CTCF-cohesin binding site reduced or eliminated the chromatin conformation linkages, and deregulated viral transcription and genome copy number control. siRNA depletion of CTCF or cohesin subunits also disrupted chromosomal linkages and deregulated viral latent and lytic gene transcription. Furthermore, the linkage between the latent and lytic control region was subject to cell cycle fluctuation and disrupted during lytic cycle reactivation, suggesting that these interactions are dynamic and regulatory. Our findings indicate that KSHV genomes are organized into chromatin loops mediated by CTCF and cohesin interactions, and that these inter-chromosomal linkages coordinate latent and lytic gene control.

摘要

疱疹病毒的持续存在需要潜伏和裂解周期基因表达之间的动态平衡,但这种平衡是如何维持的仍然是个谜。我们之前已经表明,卡波西肉瘤相关疱疹病毒 (KSHV) 的主要潜伏转录本编码 LANA、vCyclin、vFLIP、v-miRNAs 和 Kaposin,部分受到结合 CTCF 和黏连蛋白的染色质组织元件的调节。使用病毒全基因组染色质构象捕获 (3C) 方法,我们现在表明 KSHV 潜伏控制区与编码 KSHV 即刻早期蛋白 RTA 的 ORF50 的启动子调控区在物理上相关。还观察到其他连接,包括潜伏转录簇的 5' 和 3' 端之间的相互作用。CTCF-黏连蛋白结合位点的突变减少或消除了染色质构象连接,并使病毒转录和基因组拷贝数控制失调。CTCF 或黏连蛋白亚基的 siRNA 耗竭也破坏了染色体连接并使病毒潜伏和裂解基因转录失调。此外,潜伏和裂解控制区之间的连接受细胞周期波动的影响,并在裂解周期再激活期间中断,表明这些相互作用是动态和调节性的。我们的发现表明,KSHV 基因组通过 CTCF 和黏连蛋白相互作用组织成染色质环,并且这些染色体间连接协调潜伏和裂解基因控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6521/3158054/486ea57688f3/ppat.1002140.g006.jpg

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