pUL21 is a viral phosphatase adaptor that promotes herpes simplex virus replication and spread

Author:

Benedyk Tomasz H.ORCID,Muenzner JuliaORCID,Connor Viv,Han Yue,Brown Katherine,Wijesinghe Kaveesha J.ORCID,Zhuang YunhuiORCID,Colaco SusannaORCID,Stoll Guido A.ORCID,Tutt Owen S.ORCID,Svobodova Stanislava,Svergun Dmitri I.,Bryant Neil A.,Deane Janet E.ORCID,Firth Andrew E.,Jeffries Cy M.,Crump Colin M.ORCID,Graham Stephen C.ORCID

Abstract

The herpes simplex virus (HSV)-1 protein pUL21 is essential for efficient virus replication and dissemination. While pUL21 has been shown to promote multiple steps of virus assembly and spread, the molecular basis of its function remained unclear. Here we identify that pUL21 is a virus-encoded adaptor of protein phosphatase 1 (PP1). pUL21 directs the dephosphorylation of cellular and virus proteins, including components of the viral nuclear egress complex, and we define a conserved non-canonical linear motif in pUL21 that is essential for PP1 recruitment. In vitro evolution experiments reveal that pUL21 antagonises the activity of the virus-encoded kinase pUS3, with growth and spread of pUL21 PP1-binding mutant viruses being restored in adapted strains where pUS3 activity is disrupted. This study shows that virus-directed phosphatase activity is essential for efficient herpesvirus assembly and spread, highlighting the fine balance between kinase and phosphatase activity required for optimal virus replication.

Funder

wellcome trust

Biotechnology and Biological Sciences Research Council

wellcome trust and the royal society

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

Reference111 articles.

1. Incidence and mortality of herpes simplex encephalitis in Denmark: A nationwide registry-based cohort study;LK Jørgensen;J Infect.,2017

2. Global and Regional Estimates of Prevalent and Incident Herpes Simplex Virus Type 1 Infections in 2012;KJ Looker;PloS One,2015

3. The molecular basis of herpes simplex virus latency;MP Nicoll;FEMS Microbiol Rev,2012

4. Three-dimensional structure of the human cytomegalovirus cytoplasmic virion assembly complex includes a reoriented secretory apparatus;S Das;J Virol,2007

5. A fluorescent reporter system enables spatiotemporal analysis of host cell modification during herpes simplex virus-1 replication;KM Scherer;J Biol Chem,2020

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