Cargando…

Proteomic Analysis Uncovers Measles Virus Protein C Interaction With p65–iASPP Protein Complex

Viruses manipulate the central machineries of host cells to their advantage. They prevent host cell antiviral responses to create a favorable environment for their survival and propagation. Measles virus (MV) encodes two nonstructural proteins MV-V and MV-C known to counteract the host interferon re...

Descripción completa

Detalles Bibliográficos
Autores principales: Meignié, Alice, Combredet, Chantal, Santolini, Marc, Kovács, István A., Douché, Thibaut, Gianetto, Quentin Giai, Eun, Hyeju, Matondo, Mariette, Jacob, Yves, Grailhe, Regis, Tangy, Frédéric, Komarova, Anastassia V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7950213/
https://www.ncbi.nlm.nih.gov/pubmed/33515806
http://dx.doi.org/10.1016/j.mcpro.2021.100049
_version_ 1783663540445380608
author Meignié, Alice
Combredet, Chantal
Santolini, Marc
Kovács, István A.
Douché, Thibaut
Gianetto, Quentin Giai
Eun, Hyeju
Matondo, Mariette
Jacob, Yves
Grailhe, Regis
Tangy, Frédéric
Komarova, Anastassia V.
author_facet Meignié, Alice
Combredet, Chantal
Santolini, Marc
Kovács, István A.
Douché, Thibaut
Gianetto, Quentin Giai
Eun, Hyeju
Matondo, Mariette
Jacob, Yves
Grailhe, Regis
Tangy, Frédéric
Komarova, Anastassia V.
author_sort Meignié, Alice
collection PubMed
description Viruses manipulate the central machineries of host cells to their advantage. They prevent host cell antiviral responses to create a favorable environment for their survival and propagation. Measles virus (MV) encodes two nonstructural proteins MV-V and MV-C known to counteract the host interferon response and to regulate cell death pathways. Several molecular mechanisms underlining MV-V regulation of innate immunity and cell death pathways have been proposed, whereas MV-C host-interacting proteins are less studied. We suggest that some cellular factors that are controlled by MV-C protein during viral replication could be components of innate immunity and the cell death pathways. To determine which host factors are targeted by MV-C, we captured both direct and indirect host-interacting proteins of MV-C protein. For this, we used a strategy based on recombinant viruses expressing tagged viral proteins followed by affinity purification and a bottom-up mass spectrometry analysis. From the list of host proteins specifically interacting with MV-C protein in different cell lines, we selected the host targets that belong to immunity and cell death pathways for further validation. Direct protein interaction partners of MV-C were determined by applying protein complementation assay and the bioluminescence resonance energy transfer approach. As a result, we found that MV-C protein specifically interacts with p65–iASPP protein complex that controls both cell death and innate immunity pathways and evaluated the significance of these host factors on virus replication.
format Online
Article
Text
id pubmed-7950213
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-79502132021-03-19 Proteomic Analysis Uncovers Measles Virus Protein C Interaction With p65–iASPP Protein Complex Meignié, Alice Combredet, Chantal Santolini, Marc Kovács, István A. Douché, Thibaut Gianetto, Quentin Giai Eun, Hyeju Matondo, Mariette Jacob, Yves Grailhe, Regis Tangy, Frédéric Komarova, Anastassia V. Mol Cell Proteomics Research Viruses manipulate the central machineries of host cells to their advantage. They prevent host cell antiviral responses to create a favorable environment for their survival and propagation. Measles virus (MV) encodes two nonstructural proteins MV-V and MV-C known to counteract the host interferon response and to regulate cell death pathways. Several molecular mechanisms underlining MV-V regulation of innate immunity and cell death pathways have been proposed, whereas MV-C host-interacting proteins are less studied. We suggest that some cellular factors that are controlled by MV-C protein during viral replication could be components of innate immunity and the cell death pathways. To determine which host factors are targeted by MV-C, we captured both direct and indirect host-interacting proteins of MV-C protein. For this, we used a strategy based on recombinant viruses expressing tagged viral proteins followed by affinity purification and a bottom-up mass spectrometry analysis. From the list of host proteins specifically interacting with MV-C protein in different cell lines, we selected the host targets that belong to immunity and cell death pathways for further validation. Direct protein interaction partners of MV-C were determined by applying protein complementation assay and the bioluminescence resonance energy transfer approach. As a result, we found that MV-C protein specifically interacts with p65–iASPP protein complex that controls both cell death and innate immunity pathways and evaluated the significance of these host factors on virus replication. American Society for Biochemistry and Molecular Biology 2021-01-27 /pmc/articles/PMC7950213/ /pubmed/33515806 http://dx.doi.org/10.1016/j.mcpro.2021.100049 Text en © 2021 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research
Meignié, Alice
Combredet, Chantal
Santolini, Marc
Kovács, István A.
Douché, Thibaut
Gianetto, Quentin Giai
Eun, Hyeju
Matondo, Mariette
Jacob, Yves
Grailhe, Regis
Tangy, Frédéric
Komarova, Anastassia V.
Proteomic Analysis Uncovers Measles Virus Protein C Interaction With p65–iASPP Protein Complex
title Proteomic Analysis Uncovers Measles Virus Protein C Interaction With p65–iASPP Protein Complex
title_full Proteomic Analysis Uncovers Measles Virus Protein C Interaction With p65–iASPP Protein Complex
title_fullStr Proteomic Analysis Uncovers Measles Virus Protein C Interaction With p65–iASPP Protein Complex
title_full_unstemmed Proteomic Analysis Uncovers Measles Virus Protein C Interaction With p65–iASPP Protein Complex
title_short Proteomic Analysis Uncovers Measles Virus Protein C Interaction With p65–iASPP Protein Complex
title_sort proteomic analysis uncovers measles virus protein c interaction with p65–iaspp protein complex
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7950213/
https://www.ncbi.nlm.nih.gov/pubmed/33515806
http://dx.doi.org/10.1016/j.mcpro.2021.100049
work_keys_str_mv AT meigniealice proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT combredetchantal proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT santolinimarc proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT kovacsistvana proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT douchethibaut proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT gianettoquentingiai proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT eunhyeju proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT matondomariette proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT jacobyves proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT grailheregis proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT tangyfrederic proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex
AT komarovaanastassiav proteomicanalysisuncoversmeaslesvirusproteincinteractionwithp65iasppproteincomplex