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A mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase

The positive-strand RNA virus Turnip yellow mosaic virus (TYMV) encodes an ovarian tumor (OTU)-like protease/deubiquitinase (PRO/DUB) protein domain involved both in proteolytic processing of the viral polyprotein through its PRO activity, and in removal of ubiquitin chains from ubiquitylated substr...

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Autores principales: Jupin, Isabelle, Ayach, Maya, Jomat, Lucile, Fieulaine, Sonia, Bressanelli, Stéphane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5695851/
https://www.ncbi.nlm.nih.gov/pubmed/29117247
http://dx.doi.org/10.1371/journal.ppat.1006714
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author Jupin, Isabelle
Ayach, Maya
Jomat, Lucile
Fieulaine, Sonia
Bressanelli, Stéphane
author_facet Jupin, Isabelle
Ayach, Maya
Jomat, Lucile
Fieulaine, Sonia
Bressanelli, Stéphane
author_sort Jupin, Isabelle
collection PubMed
description The positive-strand RNA virus Turnip yellow mosaic virus (TYMV) encodes an ovarian tumor (OTU)-like protease/deubiquitinase (PRO/DUB) protein domain involved both in proteolytic processing of the viral polyprotein through its PRO activity, and in removal of ubiquitin chains from ubiquitylated substrates through its DUB activity. Here, the crystal structures of TYMV PRO/DUB mutants and molecular dynamics simulations reveal that an idiosyncratic mobile loop participates in reversibly constricting its unusual catalytic site by adopting "open", "intermediate" or "closed" conformations. The two cis-prolines of the loop form a rigid flap that in the most closed conformation zips up against the other side of the catalytic cleft. The intermediate and closed conformations also correlate with a reordering of the TYMV PRO/DUB catalytic dyad, that then assumes a classical, yet still unusually mobile, OTU DUB alignment. Further structure-based mutants designed to interfere with the loop's mobility were assessed for enzymatic activity in vitro and in vivo, and were shown to display reduced DUB activity while retaining PRO activity. This indicates that control of the switching between the dual PRO/DUB activities resides prominently within this loop next to the active site. Introduction of mutations into the viral genome revealed that the DUB activity contributes to the extent of viral RNA accumulation both in single cells and in whole plants. In addition, the conformation of the mobile flap was also found to influence symptoms severity in planta. Such mutants now provide powerful tools with which to study the specific roles of reversible ubiquitylation in viral infection.
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spelling pubmed-56958512017-11-30 A mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase Jupin, Isabelle Ayach, Maya Jomat, Lucile Fieulaine, Sonia Bressanelli, Stéphane PLoS Pathog Research Article The positive-strand RNA virus Turnip yellow mosaic virus (TYMV) encodes an ovarian tumor (OTU)-like protease/deubiquitinase (PRO/DUB) protein domain involved both in proteolytic processing of the viral polyprotein through its PRO activity, and in removal of ubiquitin chains from ubiquitylated substrates through its DUB activity. Here, the crystal structures of TYMV PRO/DUB mutants and molecular dynamics simulations reveal that an idiosyncratic mobile loop participates in reversibly constricting its unusual catalytic site by adopting "open", "intermediate" or "closed" conformations. The two cis-prolines of the loop form a rigid flap that in the most closed conformation zips up against the other side of the catalytic cleft. The intermediate and closed conformations also correlate with a reordering of the TYMV PRO/DUB catalytic dyad, that then assumes a classical, yet still unusually mobile, OTU DUB alignment. Further structure-based mutants designed to interfere with the loop's mobility were assessed for enzymatic activity in vitro and in vivo, and were shown to display reduced DUB activity while retaining PRO activity. This indicates that control of the switching between the dual PRO/DUB activities resides prominently within this loop next to the active site. Introduction of mutations into the viral genome revealed that the DUB activity contributes to the extent of viral RNA accumulation both in single cells and in whole plants. In addition, the conformation of the mobile flap was also found to influence symptoms severity in planta. Such mutants now provide powerful tools with which to study the specific roles of reversible ubiquitylation in viral infection. Public Library of Science 2017-11-08 /pmc/articles/PMC5695851/ /pubmed/29117247 http://dx.doi.org/10.1371/journal.ppat.1006714 Text en © 2017 Jupin 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Jupin, Isabelle
Ayach, Maya
Jomat, Lucile
Fieulaine, Sonia
Bressanelli, Stéphane
A mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase
title A mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase
title_full A mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase
title_fullStr A mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase
title_full_unstemmed A mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase
title_short A mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase
title_sort mobile loop near the active site acts as a switch between the dual activities of a viral protease/deubiquitinase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5695851/
https://www.ncbi.nlm.nih.gov/pubmed/29117247
http://dx.doi.org/10.1371/journal.ppat.1006714
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