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Rabies virus matrix protein interplay with eIF3, new insights into rabies virus pathogenesis

Viral proteins are frequently multifunctional to accommodate the high density of information encoded in viral genomes. Matrix (M) protein of negative-stranded RNA viruses such as Rhabdoviridae is one such example. Its primary function is virus assembly/budding but it is also involved in the switch f...

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Autores principales: Komarova, Anastassia V., Real, Eléonore, Borman, Andrew M., Brocard, Michèle, England, Patrick, Tordo, Noël, Hershey, John W.B., Kean, Katherine M., Jacob, Yves
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1865048/
https://www.ncbi.nlm.nih.gov/pubmed/17287294
http://dx.doi.org/10.1093/nar/gkl1127
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author Komarova, Anastassia V.
Real, Eléonore
Borman, Andrew M.
Brocard, Michèle
England, Patrick
Tordo, Noël
Hershey, John W.B.
Kean, Katherine M.
Jacob, Yves
author_facet Komarova, Anastassia V.
Real, Eléonore
Borman, Andrew M.
Brocard, Michèle
England, Patrick
Tordo, Noël
Hershey, John W.B.
Kean, Katherine M.
Jacob, Yves
author_sort Komarova, Anastassia V.
collection PubMed
description Viral proteins are frequently multifunctional to accommodate the high density of information encoded in viral genomes. Matrix (M) protein of negative-stranded RNA viruses such as Rhabdoviridae is one such example. Its primary function is virus assembly/budding but it is also involved in the switch from viral transcription to replication and the concomitant down regulation of host gene expression. In this study we undertook a search for potential rabies virus (RV) M protein's cellular partners. In a yeast two-hybrid screen the eIF3h subunit was identified as an M-interacting cellular factor, and the interaction was validated by co-immunoprecipitation and surface plasmon resonance assays. Upon expression in mammalian cell cultures, RV M protein was localized in early small ribosomal subunit fractions. Further, M protein added in trans inhibited in vitro translation on mRNA encompassing classical (Kozak-like) 5′-UTRs. Interestingly, translation of hepatitis C virus IRES-containing mRNA, which recruits eIF3 via a different noncanonical mechanism, was unaffected. Together, the data suggest that, as a complement to its functions in virus assembly/budding and regulation of viral transcription, RV M protein plays a role in inhibiting translation in virus-infected cells through a protein–protein interaction with the cellular translation machinery.
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spelling pubmed-18650482007-05-22 Rabies virus matrix protein interplay with eIF3, new insights into rabies virus pathogenesis Komarova, Anastassia V. Real, Eléonore Borman, Andrew M. Brocard, Michèle England, Patrick Tordo, Noël Hershey, John W.B. Kean, Katherine M. Jacob, Yves Nucleic Acids Res Molecular Biology Viral proteins are frequently multifunctional to accommodate the high density of information encoded in viral genomes. Matrix (M) protein of negative-stranded RNA viruses such as Rhabdoviridae is one such example. Its primary function is virus assembly/budding but it is also involved in the switch from viral transcription to replication and the concomitant down regulation of host gene expression. In this study we undertook a search for potential rabies virus (RV) M protein's cellular partners. In a yeast two-hybrid screen the eIF3h subunit was identified as an M-interacting cellular factor, and the interaction was validated by co-immunoprecipitation and surface plasmon resonance assays. Upon expression in mammalian cell cultures, RV M protein was localized in early small ribosomal subunit fractions. Further, M protein added in trans inhibited in vitro translation on mRNA encompassing classical (Kozak-like) 5′-UTRs. Interestingly, translation of hepatitis C virus IRES-containing mRNA, which recruits eIF3 via a different noncanonical mechanism, was unaffected. Together, the data suggest that, as a complement to its functions in virus assembly/budding and regulation of viral transcription, RV M protein plays a role in inhibiting translation in virus-infected cells through a protein–protein interaction with the cellular translation machinery. Oxford University Press 2007-03 2007-02-07 /pmc/articles/PMC1865048/ /pubmed/17287294 http://dx.doi.org/10.1093/nar/gkl1127 Text en © 2007 The Author(s). This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular Biology
Komarova, Anastassia V.
Real, Eléonore
Borman, Andrew M.
Brocard, Michèle
England, Patrick
Tordo, Noël
Hershey, John W.B.
Kean, Katherine M.
Jacob, Yves
Rabies virus matrix protein interplay with eIF3, new insights into rabies virus pathogenesis
title Rabies virus matrix protein interplay with eIF3, new insights into rabies virus pathogenesis
title_full Rabies virus matrix protein interplay with eIF3, new insights into rabies virus pathogenesis
title_fullStr Rabies virus matrix protein interplay with eIF3, new insights into rabies virus pathogenesis
title_full_unstemmed Rabies virus matrix protein interplay with eIF3, new insights into rabies virus pathogenesis
title_short Rabies virus matrix protein interplay with eIF3, new insights into rabies virus pathogenesis
title_sort rabies virus matrix protein interplay with eif3, new insights into rabies virus pathogenesis
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1865048/
https://www.ncbi.nlm.nih.gov/pubmed/17287294
http://dx.doi.org/10.1093/nar/gkl1127
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