期刊论文详细信息
PLoS Pathogens
A Viral Ubiquitin Ligase Has Substrate Preferential SUMO Targeted Ubiquitin Ligase Activity that Counteracts Intrinsic Antiviral Defence
Delphine Cuchet-Lourenço1  Roger D. Everett1  Mandy Glass1  Steven McFarlane1  Chris Boutell1  Emilia Vanni1  Anne Orr1 
[1] MRC-University of Glasgow Centre for Virus Research (CVR), Glasgow, Scotland, United Kingdom
关键词: Ubiquitin ligases;    Antimicrobial resistance;    Sequence motif analysis;    Viral genome;    SUMOylation;    Viral replication;    Viral gene expression;    Herpes simplex virus-1;   
DOI  :  10.1371/journal.ppat.1002245
学科分类:生物科学(综合)
来源: Public Library of Science
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【 摘 要 】

Intrinsic antiviral resistance represents the first line of intracellular defence against virus infection. During herpes simplex virus type-1 (HSV-1) infection this response can lead to the repression of viral gene expression but is counteracted by the viral ubiquitin ligase ICP0. Here we address the mechanisms by which ICP0 overcomes this antiviral response. We report that ICP0 induces the widespread proteasome-dependent degradation of SUMO-conjugated proteins during infection and has properties related to those of cellular SUMO-targeted ubiquitin ligases (STUbLs). Mutation of putative SUMO interaction motifs within ICP0 not only affects its ability to degrade SUMO conjugates, but also its capacity to stimulate HSV-1 lytic infection and reactivation from quiescence. We demonstrate that in the absence of this viral countermeasure the SUMO conjugation pathway plays an important role in mediating intrinsic antiviral resistance and the repression of HSV-1 infection. Using PML as a model substrate, we found that whilst ICP0 preferentially targets SUMO-modified isoforms of PML for degradation, it also induces the degradation of PML isoform I in a SUMO modification-independent manner. PML was degraded by ICP0 more rapidly than the bulk of SUMO-modified proteins in general, implying that the identity of a SUMO-modified protein, as well as the presence of SUMO modification, is involved in ICP0 targeting. We conclude that ICP0 has dual targeting mechanisms involving both SUMO- and substrate-dependent targeting specificities in order to counteract intrinsic antiviral resistance to HSV-1 infection.

【 授权许可】

CC BY   

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