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Plasma Membrane Profiling Defines an Expanded Class of Cell Surface Proteins Selectively Targeted for Degradation by HCMV US2 in Cooperation with UL141

Human cytomegalovirus (HCMV) US2, US3, US6 and US11 act in concert to prevent immune recognition of virally infected cells by CD8+ T-lymphocytes through downregulation of MHC class I molecules (MHC-I). Here we show that US2 function goes far beyond MHC-I degradation. A systematic proteomic study usi...

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Autores principales: Hsu, Jye-Lin, van den Boomen, Dick J. H., Tomasec, Peter, Weekes, Michael P., Antrobus, Robin, Stanton, Richard J., Ruckova, Eva, Sugrue, Daniel, Wilkie, Gavin S., Davison, Andrew J., Wilkinson, Gavin W. G., Lehner, Paul J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4397069/
https://www.ncbi.nlm.nih.gov/pubmed/25875600
http://dx.doi.org/10.1371/journal.ppat.1004811
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author Hsu, Jye-Lin
van den Boomen, Dick J. H.
Tomasec, Peter
Weekes, Michael P.
Antrobus, Robin
Stanton, Richard J.
Ruckova, Eva
Sugrue, Daniel
Wilkie, Gavin S.
Davison, Andrew J.
Wilkinson, Gavin W. G.
Lehner, Paul J.
author_facet Hsu, Jye-Lin
van den Boomen, Dick J. H.
Tomasec, Peter
Weekes, Michael P.
Antrobus, Robin
Stanton, Richard J.
Ruckova, Eva
Sugrue, Daniel
Wilkie, Gavin S.
Davison, Andrew J.
Wilkinson, Gavin W. G.
Lehner, Paul J.
author_sort Hsu, Jye-Lin
collection PubMed
description Human cytomegalovirus (HCMV) US2, US3, US6 and US11 act in concert to prevent immune recognition of virally infected cells by CD8+ T-lymphocytes through downregulation of MHC class I molecules (MHC-I). Here we show that US2 function goes far beyond MHC-I degradation. A systematic proteomic study using Plasma Membrane Profiling revealed US2 was unique in downregulating additional cellular targets, including: five distinct integrin α-chains, CD112, the interleukin-12 receptor, PTPRJ and thrombomodulin. US2 recruited the cellular E3 ligase TRC8 to direct the proteasomal degradation of all its targets, reminiscent of its degradation of MHC-I. Whereas integrin α-chains were selectively degraded, their integrin β1 binding partner accumulated in the ER. Consequently integrin signaling, cell adhesion and migration were strongly suppressed. US2 was necessary and sufficient for degradation of the majority of its substrates, but remarkably, the HCMV NK cell evasion function UL141 requisitioned US2 to enhance downregulation of the NK cell ligand CD112. UL141 retained CD112 in the ER from where US2 promoted its TRC8-dependent retrotranslocation and degradation. These findings redefine US2 as a multifunctional degradation hub which, through recruitment of the cellular E3 ligase TRC8, modulates diverse immune pathways involved in antigen presentation, NK cell activation, migration and coagulation; and highlight US2’s impact on HCMV pathogenesis.
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spelling pubmed-43970692015-04-21 Plasma Membrane Profiling Defines an Expanded Class of Cell Surface Proteins Selectively Targeted for Degradation by HCMV US2 in Cooperation with UL141 Hsu, Jye-Lin van den Boomen, Dick J. H. Tomasec, Peter Weekes, Michael P. Antrobus, Robin Stanton, Richard J. Ruckova, Eva Sugrue, Daniel Wilkie, Gavin S. Davison, Andrew J. Wilkinson, Gavin W. G. Lehner, Paul J. PLoS Pathog Research Article Human cytomegalovirus (HCMV) US2, US3, US6 and US11 act in concert to prevent immune recognition of virally infected cells by CD8+ T-lymphocytes through downregulation of MHC class I molecules (MHC-I). Here we show that US2 function goes far beyond MHC-I degradation. A systematic proteomic study using Plasma Membrane Profiling revealed US2 was unique in downregulating additional cellular targets, including: five distinct integrin α-chains, CD112, the interleukin-12 receptor, PTPRJ and thrombomodulin. US2 recruited the cellular E3 ligase TRC8 to direct the proteasomal degradation of all its targets, reminiscent of its degradation of MHC-I. Whereas integrin α-chains were selectively degraded, their integrin β1 binding partner accumulated in the ER. Consequently integrin signaling, cell adhesion and migration were strongly suppressed. US2 was necessary and sufficient for degradation of the majority of its substrates, but remarkably, the HCMV NK cell evasion function UL141 requisitioned US2 to enhance downregulation of the NK cell ligand CD112. UL141 retained CD112 in the ER from where US2 promoted its TRC8-dependent retrotranslocation and degradation. These findings redefine US2 as a multifunctional degradation hub which, through recruitment of the cellular E3 ligase TRC8, modulates diverse immune pathways involved in antigen presentation, NK cell activation, migration and coagulation; and highlight US2’s impact on HCMV pathogenesis. Public Library of Science 2015-04-14 /pmc/articles/PMC4397069/ /pubmed/25875600 http://dx.doi.org/10.1371/journal.ppat.1004811 Text en © 2015 Hsu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hsu, Jye-Lin
van den Boomen, Dick J. H.
Tomasec, Peter
Weekes, Michael P.
Antrobus, Robin
Stanton, Richard J.
Ruckova, Eva
Sugrue, Daniel
Wilkie, Gavin S.
Davison, Andrew J.
Wilkinson, Gavin W. G.
Lehner, Paul J.
Plasma Membrane Profiling Defines an Expanded Class of Cell Surface Proteins Selectively Targeted for Degradation by HCMV US2 in Cooperation with UL141
title Plasma Membrane Profiling Defines an Expanded Class of Cell Surface Proteins Selectively Targeted for Degradation by HCMV US2 in Cooperation with UL141
title_full Plasma Membrane Profiling Defines an Expanded Class of Cell Surface Proteins Selectively Targeted for Degradation by HCMV US2 in Cooperation with UL141
title_fullStr Plasma Membrane Profiling Defines an Expanded Class of Cell Surface Proteins Selectively Targeted for Degradation by HCMV US2 in Cooperation with UL141
title_full_unstemmed Plasma Membrane Profiling Defines an Expanded Class of Cell Surface Proteins Selectively Targeted for Degradation by HCMV US2 in Cooperation with UL141
title_short Plasma Membrane Profiling Defines an Expanded Class of Cell Surface Proteins Selectively Targeted for Degradation by HCMV US2 in Cooperation with UL141
title_sort plasma membrane profiling defines an expanded class of cell surface proteins selectively targeted for degradation by hcmv us2 in cooperation with ul141
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4397069/
https://www.ncbi.nlm.nih.gov/pubmed/25875600
http://dx.doi.org/10.1371/journal.ppat.1004811
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