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Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virions

The matrix (M1) protein of influenza A virus is a multifunctional protein that plays essential structural and functional roles in the virus life cycle. It drives virus budding and is the major protein component of the virion, where it forms an intermediate layer between the viral envelope and integr...

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Autores principales: Noton, Sarah L., Medcalf, Elizabeth, Fisher, Dawn, Mullin, Anne E., Elton, Debra, Digard, Paul
Formato: Texto
Lenguaje:English
Publicado: Society for General Microbiology 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2884976/
https://www.ncbi.nlm.nih.gov/pubmed/17622633
http://dx.doi.org/10.1099/vir.0.82809-0
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author Noton, Sarah L.
Medcalf, Elizabeth
Fisher, Dawn
Mullin, Anne E.
Elton, Debra
Digard, Paul
author_facet Noton, Sarah L.
Medcalf, Elizabeth
Fisher, Dawn
Mullin, Anne E.
Elton, Debra
Digard, Paul
author_sort Noton, Sarah L.
collection PubMed
description The matrix (M1) protein of influenza A virus is a multifunctional protein that plays essential structural and functional roles in the virus life cycle. It drives virus budding and is the major protein component of the virion, where it forms an intermediate layer between the viral envelope and integral membrane proteins and the genomic ribonucleoproteins (RNPs). It also helps to control the intracellular trafficking of RNPs. These roles are mediated primarily via protein–protein interactions with viral and possibly cellular proteins. Here, the regions of M1 involved in binding the viral RNPs and in mediating homo-oligomerization are identified. In vitro, by using recombinant proteins, it was found that the middle domain of M1 was responsible for binding NP and that this interaction did not require RNA. Similarly, only M1 polypeptides containing the middle domain were able to bind to RNP–M1 complexes isolated from purified virus. When M1 self-association was examined, all three domains of the protein participated in homo-oligomerization although, again, the middle domain was dominant and self-associated efficiently in the absence of the N- and C-terminal domains. However, when the individual fragments of M1 were tagged with green fluorescent protein and expressed in virus-infected cells, microscopy of filamentous particles showed that only full-length M1 was incorporated into budding virions. It is concluded that the middle domain of M1 is primarily responsible for binding NP and self-association, but that additional interactions are required for efficient incorporation of M1 into virus particles.
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spelling pubmed-28849762010-07-06 Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virions Noton, Sarah L. Medcalf, Elizabeth Fisher, Dawn Mullin, Anne E. Elton, Debra Digard, Paul J Gen Virol Animal The matrix (M1) protein of influenza A virus is a multifunctional protein that plays essential structural and functional roles in the virus life cycle. It drives virus budding and is the major protein component of the virion, where it forms an intermediate layer between the viral envelope and integral membrane proteins and the genomic ribonucleoproteins (RNPs). It also helps to control the intracellular trafficking of RNPs. These roles are mediated primarily via protein–protein interactions with viral and possibly cellular proteins. Here, the regions of M1 involved in binding the viral RNPs and in mediating homo-oligomerization are identified. In vitro, by using recombinant proteins, it was found that the middle domain of M1 was responsible for binding NP and that this interaction did not require RNA. Similarly, only M1 polypeptides containing the middle domain were able to bind to RNP–M1 complexes isolated from purified virus. When M1 self-association was examined, all three domains of the protein participated in homo-oligomerization although, again, the middle domain was dominant and self-associated efficiently in the absence of the N- and C-terminal domains. However, when the individual fragments of M1 were tagged with green fluorescent protein and expressed in virus-infected cells, microscopy of filamentous particles showed that only full-length M1 was incorporated into budding virions. It is concluded that the middle domain of M1 is primarily responsible for binding NP and self-association, but that additional interactions are required for efficient incorporation of M1 into virus particles. Society for General Microbiology 2007-08 /pmc/articles/PMC2884976/ /pubmed/17622633 http://dx.doi.org/10.1099/vir.0.82809-0 Text en Copyright © 2007, SGM http://creativecommons.org/licenses/by/2.5/ 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 work is properly cited.
spellingShingle Animal
Noton, Sarah L.
Medcalf, Elizabeth
Fisher, Dawn
Mullin, Anne E.
Elton, Debra
Digard, Paul
Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virions
title Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virions
title_full Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virions
title_fullStr Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virions
title_full_unstemmed Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virions
title_short Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virions
title_sort identification of the domains of the influenza a virus m1 matrix protein required for np binding, oligomerization and incorporation into virions
topic Animal
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2884976/
https://www.ncbi.nlm.nih.gov/pubmed/17622633
http://dx.doi.org/10.1099/vir.0.82809-0
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