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Effective Formation of the Segregation-Competent Complex Determines Successful Partitioning of the Bovine Papillomavirus Genome during Cell Division

机译:有效形成的分离能力复杂决定了细胞分裂过程中牛乳头瘤病毒基因组的成功划分。

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摘要

Effective segregation of the bovine papillomavirus type 1 (BPV1), Epstein-Barr virus (EBV), and Kaposi's sarcoma-associated human herpesvirus type 8 (KSHV) genomes into daughter cells is mediated by a single viral protein that tethers viral genomes to host mitotic chromosomes. The linker proteins that mediate BPV1, EBV, and KSHV segregation are E2, LANA1, and EBNA1, respectively. The N-terminal transactivation domain of BPV1 E2 is responsible for chromatin attachment and subsequent viral genome segregation. Because E2 transcriptional activation and chromatin attachment functions are not mutually exclusive, we aimed to determine the requirement of these activities during segregation by analyzing chimeric E2 proteins. This approach allowed us to separate the two activities. Our data showed that attachment of the segregation protein to chromatin is not sufficient for proper segregation. Rather, formation of a segregation-competent complex which carries multiple copies of the segregation protein is required. Complementation studies of E2 functional domains indicated that chromatin attachment and transactivation functions must act in concert to ensure proper plasmid segregation. These data indicate that there are specific interactions between linker molecules and transcription factors/complexes that greatly increase segregation-competent complex formation. We also showed, using hybrid E2 molecules, that restored segregation function does not involve interactions with Brd4.
机译:牛病毒乳头瘤病毒1型(BPV1),爱泼斯坦-巴尔病毒(EBV)和卡波济氏肉瘤相关的人类疱疹病毒8型(KSHV)基因组的有效分离是由单个病毒蛋白介导的,该蛋白将病毒基因组束缚于宿主有丝分裂染色体。介导BPV1,EBV和KSHV分离的接头蛋白分别为E2,LANA1和EBNA1。 BPV1 E2的N末端反式激活域负责染色质附着和随后的病毒基因组分离。由于E2转录激活和染色质附着功能不是互斥的,因此我们旨在通过分析嵌合E2蛋白来确定分离过程中这些活性的需求。这种方法使我们可以将这两个活动分开。我们的数据表明,分离蛋白与染色质的附着不足以实现正确的分离。而是需要形成带有分离蛋白的多个拷贝的具有分离能力的复合物。 E2功能域的补充研究表明,染色质附着和反式激活功能必须协同作用,以确保正确的质粒分离。这些数据表明,在接头分子和转录因子/复合物之间存在特定的相互作用,从而大大增加了具有分离能力的复合物的形成。我们还显示,使用杂化E2分子,恢复的分离功能不涉及与Brd4的相互作用。

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