A viral E3 ubiquitin ligase produced by herpes simplex virus 1 inhibits the NLRP1 inflammasome

Author:

Parameswaran Pooja123ORCID,Payne Laurellee12ORCID,Powers Jennifer12ORCID,Rashighi Mehdi34ORCID,Orzalli Megan H.123ORCID

Affiliation:

1. University of Massachusetts Chan Medical School 1 Department of Medicine, Division of Infectious Diseases and Immunology, , Worcester, MA, USA

2. Program in Innate Immunity, University of Massachusetts Chan Medical School 2 , Worcester, MA, USA

3. Immunology and Microbiology Program, Morningside Graduate School of Biomedical Sciences, University of Massachusetts Chan Medical School 3 , Worcester, MA, USA

4. University of Massachusetts Chan Medical School 4 Department of Dermatology, , Worcester, MA, USA

Abstract

Guard proteins initiate defense mechanisms upon sensing pathogen-encoded virulence factors. Successful viral pathogens likely inhibit guard protein activity, but these interactions have been largely undefined. Here, we demonstrate that the human pathogen herpes simplex virus 1 (HSV-1) stimulates and inhibits an antiviral pathway initiated by NLRP1, a guard protein that induces inflammasome formation and pyroptotic cell death when activated. Notably, HSV-1 infection of human keratinocytes promotes posttranslational modifications to NLRP1, consistent with MAPK-dependent NLRP1 activation, but does not result in downstream inflammasome formation. We identify infected cell protein 0 (ICP0) as the critical HSV-1 protein that is necessary and sufficient for inhibition of the NLRP1 pathway. Mechanistically, ICP0’s cytoplasmic localization and function as an E3 ubiquitin ligase prevents proteasomal degradation of the auto-inhibitory NT-NLRP1 fragment, thereby preventing inflammasome formation. Further, we demonstrate that inhibiting this inflammasome is important for promoting HSV-1 replication. Thus, we have established a mechanism by which HSV-1 overcomes a guard-mediated antiviral defense strategy in humans.

Funder

National Institutes of Health

Richard and Susan Smith Family Foundation

UMass Chan Medical School

Publisher

Rockefeller University Press

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