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Evidence for Ubiquitin-Regulated Nuclear and Subnuclear Trafficking among Paramyxovirinae Matrix Proteins

The paramyxovirus matrix (M) protein is a molecular scaffold required for viral morphogenesis and budding at the plasma membrane. Transient nuclear residence of some M proteins hints at non-structural roles. However, little is known regarding the mechanisms that regulate the nuclear sojourn. Previou...

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Autores principales: Pentecost, Mickey, Vashisht, Ajay A., Lester, Talia, Voros, Tim, Beaty, Shannon M., Park, Arnold, Wang, Yao E., Yun, Tatyana E, Freiberg, Alexander N., Wohlschlegel, James A., Lee, Benhur
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4363627/
https://www.ncbi.nlm.nih.gov/pubmed/25782006
http://dx.doi.org/10.1371/journal.ppat.1004739
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author Pentecost, Mickey
Vashisht, Ajay A.
Lester, Talia
Voros, Tim
Beaty, Shannon M.
Park, Arnold
Wang, Yao E.
Yun, Tatyana E
Freiberg, Alexander N.
Wohlschlegel, James A.
Lee, Benhur
author_facet Pentecost, Mickey
Vashisht, Ajay A.
Lester, Talia
Voros, Tim
Beaty, Shannon M.
Park, Arnold
Wang, Yao E.
Yun, Tatyana E
Freiberg, Alexander N.
Wohlschlegel, James A.
Lee, Benhur
author_sort Pentecost, Mickey
collection PubMed
description The paramyxovirus matrix (M) protein is a molecular scaffold required for viral morphogenesis and budding at the plasma membrane. Transient nuclear residence of some M proteins hints at non-structural roles. However, little is known regarding the mechanisms that regulate the nuclear sojourn. Previously, we found that the nuclear-cytoplasmic trafficking of Nipah virus M (NiV-M) is a prerequisite for budding, and is regulated by a bipartite nuclear localization signal (NLS(bp)), a leucine-rich nuclear export signal (NES), and monoubiquitination of the K258 residue within the NLSbp itself (NLS(bp)-lysine). To define whether the sequence determinants of nuclear trafficking identified in NiV-M are common among other Paramyxovirinae M proteins, we generated the homologous NES and NLS(bp)-lysine mutations in M proteins from the five major Paramyxovirinae genera. Using quantitative 3D confocal microscopy, we determined that the NES and NLS(bp)-lysine are required for the efficient nuclear export of the M proteins of Nipah virus, Hendra virus, Sendai virus, and Mumps virus. Pharmacological depletion of free ubiquitin or mutation of the conserved NLS(bp)-lysine to an arginine, which inhibits M ubiquitination, also results in nuclear and nucleolar retention of these M proteins. Recombinant Sendai virus (rSeV-eGFP) bearing the NES or NLS(bp)-lysine M mutants rescued at similar efficiencies to wild type. However, foci of cells expressing the M mutants displayed marked fusogenicity in contrast to wild type, and infection did not spread. Recombinant Mumps virus (rMuV-eGFP) bearing the homologous mutations showed similar defects in viral morphogenesis. Finally, shotgun proteomics experiments indicated that the interactomes of Paramyxovirinae M proteins are significantly enriched for components of the nuclear pore complex, nuclear transport receptors, and nucleolar proteins. We then synthesize our functional and proteomics data to propose a working model for the ubiquitin-regulated nuclear-cytoplasmic trafficking of cognate paramyxovirus M proteins that show a consistent nuclear trafficking phenotype.
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spelling pubmed-43636272015-03-23 Evidence for Ubiquitin-Regulated Nuclear and Subnuclear Trafficking among Paramyxovirinae Matrix Proteins Pentecost, Mickey Vashisht, Ajay A. Lester, Talia Voros, Tim Beaty, Shannon M. Park, Arnold Wang, Yao E. Yun, Tatyana E Freiberg, Alexander N. Wohlschlegel, James A. Lee, Benhur PLoS Pathog Research Article The paramyxovirus matrix (M) protein is a molecular scaffold required for viral morphogenesis and budding at the plasma membrane. Transient nuclear residence of some M proteins hints at non-structural roles. However, little is known regarding the mechanisms that regulate the nuclear sojourn. Previously, we found that the nuclear-cytoplasmic trafficking of Nipah virus M (NiV-M) is a prerequisite for budding, and is regulated by a bipartite nuclear localization signal (NLS(bp)), a leucine-rich nuclear export signal (NES), and monoubiquitination of the K258 residue within the NLSbp itself (NLS(bp)-lysine). To define whether the sequence determinants of nuclear trafficking identified in NiV-M are common among other Paramyxovirinae M proteins, we generated the homologous NES and NLS(bp)-lysine mutations in M proteins from the five major Paramyxovirinae genera. Using quantitative 3D confocal microscopy, we determined that the NES and NLS(bp)-lysine are required for the efficient nuclear export of the M proteins of Nipah virus, Hendra virus, Sendai virus, and Mumps virus. Pharmacological depletion of free ubiquitin or mutation of the conserved NLS(bp)-lysine to an arginine, which inhibits M ubiquitination, also results in nuclear and nucleolar retention of these M proteins. Recombinant Sendai virus (rSeV-eGFP) bearing the NES or NLS(bp)-lysine M mutants rescued at similar efficiencies to wild type. However, foci of cells expressing the M mutants displayed marked fusogenicity in contrast to wild type, and infection did not spread. Recombinant Mumps virus (rMuV-eGFP) bearing the homologous mutations showed similar defects in viral morphogenesis. Finally, shotgun proteomics experiments indicated that the interactomes of Paramyxovirinae M proteins are significantly enriched for components of the nuclear pore complex, nuclear transport receptors, and nucleolar proteins. We then synthesize our functional and proteomics data to propose a working model for the ubiquitin-regulated nuclear-cytoplasmic trafficking of cognate paramyxovirus M proteins that show a consistent nuclear trafficking phenotype. Public Library of Science 2015-03-17 /pmc/articles/PMC4363627/ /pubmed/25782006 http://dx.doi.org/10.1371/journal.ppat.1004739 Text en © 2015 Pentecost 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
Pentecost, Mickey
Vashisht, Ajay A.
Lester, Talia
Voros, Tim
Beaty, Shannon M.
Park, Arnold
Wang, Yao E.
Yun, Tatyana E
Freiberg, Alexander N.
Wohlschlegel, James A.
Lee, Benhur
Evidence for Ubiquitin-Regulated Nuclear and Subnuclear Trafficking among Paramyxovirinae Matrix Proteins
title Evidence for Ubiquitin-Regulated Nuclear and Subnuclear Trafficking among Paramyxovirinae Matrix Proteins
title_full Evidence for Ubiquitin-Regulated Nuclear and Subnuclear Trafficking among Paramyxovirinae Matrix Proteins
title_fullStr Evidence for Ubiquitin-Regulated Nuclear and Subnuclear Trafficking among Paramyxovirinae Matrix Proteins
title_full_unstemmed Evidence for Ubiquitin-Regulated Nuclear and Subnuclear Trafficking among Paramyxovirinae Matrix Proteins
title_short Evidence for Ubiquitin-Regulated Nuclear and Subnuclear Trafficking among Paramyxovirinae Matrix Proteins
title_sort evidence for ubiquitin-regulated nuclear and subnuclear trafficking among paramyxovirinae matrix proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4363627/
https://www.ncbi.nlm.nih.gov/pubmed/25782006
http://dx.doi.org/10.1371/journal.ppat.1004739
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