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PML 异构体 I 和 II 参与 PML 依赖性的 HSV-1 复制限制。

PML isoforms I and II participate in PML-dependent restriction of HSV-1 replication.

机构信息

MRC-University of Glasgow Centre for Virus Research, Church Street, Glasgow G11 5JR, Scotland, UK.

出版信息

J Cell Sci. 2011 Jan 15;124(Pt 2):280-91. doi: 10.1242/jcs.075390. Epub 2010 Dec 20.

Abstract

Intrinsic antiviral resistance mediated by constitutively expressed cellular proteins is one arm of defence against virus infection. Promyelocytic leukaemia nuclear bodies (PML-NBs, also known as ND10) contribute to host restriction of herpes simplex virus type 1 (HSV-1) replication via mechanisms that are counteracted by viral regulatory protein ICP0. ND10 assembly is dependent on PML, which comprises several different isoforms, and depletion of all PML isoforms decreases cellular resistance to ICP0-null mutant HSV-1. We report that individual expression of PML isoforms I and II partially reverses the increase in ICP0-null mutant HSV-1 plaque formation that occurs in PML-depleted cells. This activity of PML isoform I is dependent on SUMO modification, its SUMO interaction motif (SIM), and each element of its TRIM domain. Detailed analysis revealed that the punctate foci formed by individual PML isoforms differ subtly from normal ND10 in terms of composition and/or Sp100 modification. Surprisingly, deletion of the SIM motif from PML isoform I resulted in increased colocalisation with other major ND10 components in cells lacking endogenous PML. Our observations suggest that complete functionality of PML is dependent on isoform-specific C-terminal sequences acting in concert.

摘要

固有抗病毒抵抗由组成型表达的细胞蛋白介导,是抵抗病毒感染的防御机制之一。早幼粒细胞白血病核体 (PML-NBs,也称为 ND10) 通过多种机制有助于宿主限制单纯疱疹病毒 1 型 (HSV-1) 的复制,这些机制被病毒调节蛋白 ICP0 所拮抗。ND10 的组装依赖于 PML,它包含几种不同的亚型,所有 PML 亚型的耗尽都会降低细胞对 ICP0 缺失突变 HSV-1 的抵抗力。我们报告说,PML 亚型 I 和 II 的单独表达部分逆转了在 PML 耗尽细胞中发生的 ICP0 缺失突变 HSV-1 斑块形成的增加。PML 亚型 I 的这种活性依赖于 SUMO 修饰、其 SUMO 相互作用基序 (SIM) 和其 TRIM 结构域的每个元件。详细分析表明,单独的 PML 亚型形成的点状焦点在组成和/或 Sp100 修饰方面与正常的 ND10 略有不同。令人惊讶的是,从 PML 亚型 I 中删除 SIM 基序会导致在缺乏内源性 PML 的细胞中与其他主要 ND10 成分的共定位增加。我们的观察表明,PML 的完全功能依赖于协同作用的特定于亚型的 C 末端序列。

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