| Literature DB >> 31928630 |
Ivana Strazic Geljic1, Paola Kucan Brlic1, Guillem Angulo2, Ilija Brizic1,3, Berislav Lisnic1,3, Tina Jenus1, Vanda Juranic Lisnic1,3, Gian Pietro Pietri1, Pablo Engel2,4, Noa Kaynan5, Jelena Zeleznjak1,3, Peter Schu6, Ofer Mandelboim5, Astrid Krmpotic3, Ana Angulo2,4, Stipan Jonjic1,3, Tihana Lenac Rovis1,3.
Abstract
Cytomegaloviruses (CMVs) are ubiquitous pathogens known to employ numerous immunoevasive strategies that significantly impair the ability of the immune system to eliminate the infected cells. Here, we report that the single mouse CMV (MCMV) protein, m154, downregulates multiple surface molecules involved in the activation and costimulation of the immune cells. We demonstrate that m154 uses its cytoplasmic tail motif, DD, to interfere with the adaptor protein-1 (AP-1) complex, implicated in intracellular protein sorting and packaging. As a consequence of the perturbed AP-1 sorting, m154 promotes lysosomal degradation of several proteins involved in T cell costimulation, thus impairing virus-specific CD8+ T cell response and virus control in vivo. Additionally, we show that HCMV infection similarly interferes with the AP-1 complex. Altogether, we identify the robust mechanism employed by single viral immunomodulatory protein targeting a broad spectrum of cell surface molecules involved in the antiviral immune response.Entities:
Keywords: CD8+ T cells; PVR, CD155; adaptor protein-1, AP-1; cytomegalovirus, CMV; immune evasion; immunology; infectious disease; inflammation; m154 protein; microbiology; virus
Year: 2020 PMID: 31928630 DOI: 10.7554/eLife.50803
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.140