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SUMO Pathway Dependent Recruitment of Cellular Repressors to Herpes Simplex Virus Type 1 Genomes

机译:相扑通路依赖招募的细胞阻遏物对单纯疱疹病毒1型基因组的影响。

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摘要

Components of promyelocytic leukaemia (PML) nuclear bodies (ND10) are recruited to sites associated with herpes simplex virus type 1 (HSV-1) genomes soon after they enter the nucleus. This cellular response is linked to intrinsic antiviral resistance and is counteracted by viral regulatory protein ICP0. We report that the SUMO interaction motifs of PML, Sp100 and hDaxx are required for recruitment of these repressive proteins to HSV-1 induced foci, which also contain SUMO conjugates and PIAS2β, a SUMO E3 ligase. SUMO modification of PML and elements of its tripartite motif (TRIM) are also required for recruitment in cells lacking endogenous PML. Mutants of PML isoform I and hDaxx that are not recruited to virus induced foci are unable to reproduce the repression of ICP0 null mutant HSV-1 infection mediated by their wild type counterparts. We conclude that recruitment of ND10 components to sites associated with HSV-1 genomes reflects a cellular defence against invading pathogen DNA that is regulated through the SUMO modification pathway.
机译:早幼粒细胞白血病(PML)核小体(ND10)的组成部分进入核后不久便被募集到与单纯疱疹病毒1型(HSV-1)基因组相关的位点。这种细胞反应与固有的抗病毒抗性有关,并被病毒调节蛋白ICP0抵消。我们报告说,PML,Sp100和hDaxx的SUMO相互作用基序是这些抑制蛋白募集至HSV-1诱导病灶所必需的,这些病灶还包含SUMO缀合物和PIAS2β(SUMO E3连接酶)。在缺乏内源性PML的细胞中募集还需要SUM修饰PML及其三重基序(TRIM)的元素。未募集到病毒诱导病灶的PML亚型I和hDaxx突变体无法重现其野生型对应物介导的ICP0空突变体HSV-1感染的抑制。我们得出的结论是,将ND10组分募集到与HSV-1基因组相关的位点反映了针对通过SUMO修饰途径调节的入侵病原体DNA的细胞防御作用。

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