HCMV-secreted glycoprotein gpUL4 inhibits TRAIL-mediated apoptosis and NK cell activation

Author:

Vlachava Virginia-Maria1,Seirafian Sepehr1ORCID,Fielding Ceri A.1ORCID,Kollnberger Simon1,Aicheler Rebecca J.2,Hughes Joseph3ORCID,Baker Alexander1,Weekes Michael P.4ORCID,Forbes Simone1,Wilkinson Gavin W. G.1,Wang Eddie C. Y.1ORCID,Stanton Richard J.1ORCID

Affiliation:

1. Infection and Immunity, School of Medicine, Cardiff University, Cardiff CF14 4XN, United Kingdom

2. Department of Biomedical Sciences, Cardiff School of Sport and Health Sciences, Cardiff Metropolitan University, Cardiff CF5 2YB, United Kingdom

3. Centre for Virus Research, School of Infection & Immunity, Glasgow University, Glasgow G61 1QH, United Kingdom

4. Cambridge Institute for Medical Research, Department of Medicine, University of Cambridge, Cambridge CB2 0XY, United Kingdom

Abstract

Human cytomegalovirus (HCMV) is a paradigm of pathogen immune evasion and sustains lifelong persistent infection in the face of exceptionally powerful host immune responses through the concerted action of multiple immune-evasins. These reduce NK cell activation by inhibiting ligands for activating receptors, expressing ligands for inhibitory receptors, or inhibiting synapse formation. However, these functions only inhibit direct interactions with the infected cell. To determine whether the virus also expresses soluble factors that could modulate NK function at a distance, we systematically screened all 170 HCMV canonical protein-coding genes. This revealed that UL4 encodes a secreted and heavily glycosylated protein (gpUL4) that is expressed with late-phase kinetics and is capable of inhibiting NK cell degranulation. Analyses of gpUL4 binding partners by mass spectrometry identified an interaction with TRAIL. gpUL4 bound TRAIL with picomolar affinity and prevented TRAIL from binding its receptor, thus acting as a TRAIL decoy receptor. TRAIL is found in both soluble and membrane-bound forms, with expression of the membrane-bound form strongly up-regulated on NK cells in response to interferon. gpUL4 inhibited apoptosis induced by soluble TRAIL, while also binding to the NK cell surface in a TRAIL-dependent manner, where it blocked NK cell degranulation and cytokine secretion. gpUL4 therefore acts as an immune-evasin by inhibiting both soluble and membrane-bound TRAIL and is a viral-encoded TRAIL decoy receptor. Interestingly, gpUL4 could also suppress NK responses to heterologous viruses, suggesting that it may act as a systemic virally encoded immunosuppressive agent.

Funder

UKRI | MRC | Medical Research Foundation

Wellcome Trust

UKRI | Medical Research Council

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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