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Combined structural, biochemical and cellular evidence demonstrates that both FGDF motifs in alphavirus nsP3 are required for efficient replication

Recent findings have highlighted the role of the Old World alphavirus non-structural protein 3 (nsP3) as a host defence modulator that functions by disrupting stress granules, subcellular phase-dense RNA/protein structures formed upon environmental stress. This disruption mechanism was largely expla...

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Autores principales: Schulte, Tim, Liu, Lifeng, Panas, Marc D., Thaa, Bastian, Dickson, Nicole, Götte, Benjamin, Achour, Adnane, McInerney, Gerald M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4967826/
https://www.ncbi.nlm.nih.gov/pubmed/27383630
http://dx.doi.org/10.1098/rsob.160078
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author Schulte, Tim
Liu, Lifeng
Panas, Marc D.
Thaa, Bastian
Dickson, Nicole
Götte, Benjamin
Achour, Adnane
McInerney, Gerald M.
author_facet Schulte, Tim
Liu, Lifeng
Panas, Marc D.
Thaa, Bastian
Dickson, Nicole
Götte, Benjamin
Achour, Adnane
McInerney, Gerald M.
author_sort Schulte, Tim
collection PubMed
description Recent findings have highlighted the role of the Old World alphavirus non-structural protein 3 (nsP3) as a host defence modulator that functions by disrupting stress granules, subcellular phase-dense RNA/protein structures formed upon environmental stress. This disruption mechanism was largely explained through nsP3-mediated recruitment of the host G3BP protein via two tandem FGDF motifs. Here, we present the 1.9 Å resolution crystal structure of the NTF2-like domain of G3BP-1 in complex with a 25-residue peptide derived from Semliki Forest virus nsP3 (nsP3-25). The structure reveals a poly-complex of G3BP-1 dimers interconnected through the FGDF motifs in nsP3-25. Although in vitro and in vivo binding studies revealed a hierarchical interaction of the two FGDF motifs with G3BP-1, viral growth curves clearly demonstrated that two intact FGDF motifs are required for efficient viral replication. Chikungunya virus nsP3 also binds G3BP dimers via a hierarchical interaction, which was found to be critical for viral replication. These results highlight a conserved molecular mechanism in host cell modulation.
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spelling pubmed-49678262016-08-04 Combined structural, biochemical and cellular evidence demonstrates that both FGDF motifs in alphavirus nsP3 are required for efficient replication Schulte, Tim Liu, Lifeng Panas, Marc D. Thaa, Bastian Dickson, Nicole Götte, Benjamin Achour, Adnane McInerney, Gerald M. Open Biol Research Recent findings have highlighted the role of the Old World alphavirus non-structural protein 3 (nsP3) as a host defence modulator that functions by disrupting stress granules, subcellular phase-dense RNA/protein structures formed upon environmental stress. This disruption mechanism was largely explained through nsP3-mediated recruitment of the host G3BP protein via two tandem FGDF motifs. Here, we present the 1.9 Å resolution crystal structure of the NTF2-like domain of G3BP-1 in complex with a 25-residue peptide derived from Semliki Forest virus nsP3 (nsP3-25). The structure reveals a poly-complex of G3BP-1 dimers interconnected through the FGDF motifs in nsP3-25. Although in vitro and in vivo binding studies revealed a hierarchical interaction of the two FGDF motifs with G3BP-1, viral growth curves clearly demonstrated that two intact FGDF motifs are required for efficient viral replication. Chikungunya virus nsP3 also binds G3BP dimers via a hierarchical interaction, which was found to be critical for viral replication. These results highlight a conserved molecular mechanism in host cell modulation. The Royal Society 2016-07-06 /pmc/articles/PMC4967826/ /pubmed/27383630 http://dx.doi.org/10.1098/rsob.160078 Text en © 2016 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Schulte, Tim
Liu, Lifeng
Panas, Marc D.
Thaa, Bastian
Dickson, Nicole
Götte, Benjamin
Achour, Adnane
McInerney, Gerald M.
Combined structural, biochemical and cellular evidence demonstrates that both FGDF motifs in alphavirus nsP3 are required for efficient replication
title Combined structural, biochemical and cellular evidence demonstrates that both FGDF motifs in alphavirus nsP3 are required for efficient replication
title_full Combined structural, biochemical and cellular evidence demonstrates that both FGDF motifs in alphavirus nsP3 are required for efficient replication
title_fullStr Combined structural, biochemical and cellular evidence demonstrates that both FGDF motifs in alphavirus nsP3 are required for efficient replication
title_full_unstemmed Combined structural, biochemical and cellular evidence demonstrates that both FGDF motifs in alphavirus nsP3 are required for efficient replication
title_short Combined structural, biochemical and cellular evidence demonstrates that both FGDF motifs in alphavirus nsP3 are required for efficient replication
title_sort combined structural, biochemical and cellular evidence demonstrates that both fgdf motifs in alphavirus nsp3 are required for efficient replication
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4967826/
https://www.ncbi.nlm.nih.gov/pubmed/27383630
http://dx.doi.org/10.1098/rsob.160078
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