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Autoproteolysis and Intramolecular Dissociation of Yersinia YscU Precedes Secretion of Its C-Terminal Polypeptide YscU(CC)

Type III secretion system mediated secretion and translocation of Yop-effector proteins across the eukaryotic target cell membrane by pathogenic Yersinia is highly organized and is dependent on a switching event from secretion of early structural substrates to late effector substrates (Yops). Substr...

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Autores principales: Frost, Stefan, Ho, Oanh, Login, Frédéric H., Weise, Christoph F., Wolf-Watz, Hans, Wolf-Watz, Magnus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3504009/
https://www.ncbi.nlm.nih.gov/pubmed/23185318
http://dx.doi.org/10.1371/journal.pone.0049349
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author Frost, Stefan
Ho, Oanh
Login, Frédéric H.
Weise, Christoph F.
Wolf-Watz, Hans
Wolf-Watz, Magnus
author_facet Frost, Stefan
Ho, Oanh
Login, Frédéric H.
Weise, Christoph F.
Wolf-Watz, Hans
Wolf-Watz, Magnus
author_sort Frost, Stefan
collection PubMed
description Type III secretion system mediated secretion and translocation of Yop-effector proteins across the eukaryotic target cell membrane by pathogenic Yersinia is highly organized and is dependent on a switching event from secretion of early structural substrates to late effector substrates (Yops). Substrate switching can be mimicked in vitro by modulating the calcium levels in the growth medium. YscU that is essential for regulation of this switch undergoes autoproteolysis at a conserved N↑PTH motif, resulting in a 10 kDa C-terminal polypeptide fragment denoted YscU(CC). Here we show that depletion of calcium induces intramolecular dissociation of YscU(CC) from YscU followed by secretion of the YscU(CC) polypeptide. Thus, YscU(CC) behaved in vivo as a Yop protein with respect to secretion properties. Further, destabilized yscU mutants displayed increased rates of dissociation of YscU(CC) in vitro resulting in enhanced Yop secretion in vivo at 30°C relative to the wild-type strain.These findings provide strong support to the relevance of YscU(CC) dissociation for Yop secretion. We propose that YscU(CC) orchestrates a block in the secretion channel that is eliminated by calcium depletion. Further, the striking homology between different members of the YscU/FlhB family suggests that this protein family possess regulatory functions also in other bacteria using comparable mechanisms.
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spelling pubmed-35040092012-11-26 Autoproteolysis and Intramolecular Dissociation of Yersinia YscU Precedes Secretion of Its C-Terminal Polypeptide YscU(CC) Frost, Stefan Ho, Oanh Login, Frédéric H. Weise, Christoph F. Wolf-Watz, Hans Wolf-Watz, Magnus PLoS One Research Article Type III secretion system mediated secretion and translocation of Yop-effector proteins across the eukaryotic target cell membrane by pathogenic Yersinia is highly organized and is dependent on a switching event from secretion of early structural substrates to late effector substrates (Yops). Substrate switching can be mimicked in vitro by modulating the calcium levels in the growth medium. YscU that is essential for regulation of this switch undergoes autoproteolysis at a conserved N↑PTH motif, resulting in a 10 kDa C-terminal polypeptide fragment denoted YscU(CC). Here we show that depletion of calcium induces intramolecular dissociation of YscU(CC) from YscU followed by secretion of the YscU(CC) polypeptide. Thus, YscU(CC) behaved in vivo as a Yop protein with respect to secretion properties. Further, destabilized yscU mutants displayed increased rates of dissociation of YscU(CC) in vitro resulting in enhanced Yop secretion in vivo at 30°C relative to the wild-type strain.These findings provide strong support to the relevance of YscU(CC) dissociation for Yop secretion. We propose that YscU(CC) orchestrates a block in the secretion channel that is eliminated by calcium depletion. Further, the striking homology between different members of the YscU/FlhB family suggests that this protein family possess regulatory functions also in other bacteria using comparable mechanisms. Public Library of Science 2012-11-21 /pmc/articles/PMC3504009/ /pubmed/23185318 http://dx.doi.org/10.1371/journal.pone.0049349 Text en © 2012 Frost 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
Frost, Stefan
Ho, Oanh
Login, Frédéric H.
Weise, Christoph F.
Wolf-Watz, Hans
Wolf-Watz, Magnus
Autoproteolysis and Intramolecular Dissociation of Yersinia YscU Precedes Secretion of Its C-Terminal Polypeptide YscU(CC)
title Autoproteolysis and Intramolecular Dissociation of Yersinia YscU Precedes Secretion of Its C-Terminal Polypeptide YscU(CC)
title_full Autoproteolysis and Intramolecular Dissociation of Yersinia YscU Precedes Secretion of Its C-Terminal Polypeptide YscU(CC)
title_fullStr Autoproteolysis and Intramolecular Dissociation of Yersinia YscU Precedes Secretion of Its C-Terminal Polypeptide YscU(CC)
title_full_unstemmed Autoproteolysis and Intramolecular Dissociation of Yersinia YscU Precedes Secretion of Its C-Terminal Polypeptide YscU(CC)
title_short Autoproteolysis and Intramolecular Dissociation of Yersinia YscU Precedes Secretion of Its C-Terminal Polypeptide YscU(CC)
title_sort autoproteolysis and intramolecular dissociation of yersinia yscu precedes secretion of its c-terminal polypeptide yscu(cc)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3504009/
https://www.ncbi.nlm.nih.gov/pubmed/23185318
http://dx.doi.org/10.1371/journal.pone.0049349
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