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A Versatile Class of Cell Surface Directional Motors Gives Rise to Gliding Motility and Sporulation in Myxococcus xanthus

Eukaryotic cells utilize an arsenal of processive transport systems to deliver macromolecules to specific subcellular sites. In prokaryotes, such transport mechanisms have only been shown to mediate gliding motility, a form of microbial surface translocation. Here, we show that the motility function...

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Autores principales: Wartel, Morgane, Ducret, Adrien, Thutupalli, Shashi, Czerwinski, Fabian, Le Gall, Anne-Valérie, Mauriello, Emilia M. F., Bergam, Ptissam, Brun, Yves V., Shaevitz, Joshua, Mignot, Tâm
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858216/
https://www.ncbi.nlm.nih.gov/pubmed/24339744
http://dx.doi.org/10.1371/journal.pbio.1001728
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author Wartel, Morgane
Ducret, Adrien
Thutupalli, Shashi
Czerwinski, Fabian
Le Gall, Anne-Valérie
Mauriello, Emilia M. F.
Bergam, Ptissam
Brun, Yves V.
Shaevitz, Joshua
Mignot, Tâm
author_facet Wartel, Morgane
Ducret, Adrien
Thutupalli, Shashi
Czerwinski, Fabian
Le Gall, Anne-Valérie
Mauriello, Emilia M. F.
Bergam, Ptissam
Brun, Yves V.
Shaevitz, Joshua
Mignot, Tâm
author_sort Wartel, Morgane
collection PubMed
description Eukaryotic cells utilize an arsenal of processive transport systems to deliver macromolecules to specific subcellular sites. In prokaryotes, such transport mechanisms have only been shown to mediate gliding motility, a form of microbial surface translocation. Here, we show that the motility function of the Myxococcus xanthus Agl-Glt machinery results from the recent specialization of a versatile class of bacterial transporters. Specifically, we demonstrate that the Agl motility motor is modular and dissociates from the rest of the gliding machinery (the Glt complex) to bind the newly expressed Nfs complex, a close Glt paralogue, during sporulation. Following this association, the Agl system transports Nfs proteins directionally around the spore surface. Since the main spore coat polymer is secreted at discrete sites around the spore surface, its transport by Agl-Nfs ensures its distribution around the spore. Thus, the Agl-Glt/Nfs machineries may constitute a novel class of directional bacterial surface transporters that can be diversified to specific tasks depending on the cognate cargo and machinery-specific accessories.
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spelling pubmed-38582162013-12-11 A Versatile Class of Cell Surface Directional Motors Gives Rise to Gliding Motility and Sporulation in Myxococcus xanthus Wartel, Morgane Ducret, Adrien Thutupalli, Shashi Czerwinski, Fabian Le Gall, Anne-Valérie Mauriello, Emilia M. F. Bergam, Ptissam Brun, Yves V. Shaevitz, Joshua Mignot, Tâm PLoS Biol Research Article Eukaryotic cells utilize an arsenal of processive transport systems to deliver macromolecules to specific subcellular sites. In prokaryotes, such transport mechanisms have only been shown to mediate gliding motility, a form of microbial surface translocation. Here, we show that the motility function of the Myxococcus xanthus Agl-Glt machinery results from the recent specialization of a versatile class of bacterial transporters. Specifically, we demonstrate that the Agl motility motor is modular and dissociates from the rest of the gliding machinery (the Glt complex) to bind the newly expressed Nfs complex, a close Glt paralogue, during sporulation. Following this association, the Agl system transports Nfs proteins directionally around the spore surface. Since the main spore coat polymer is secreted at discrete sites around the spore surface, its transport by Agl-Nfs ensures its distribution around the spore. Thus, the Agl-Glt/Nfs machineries may constitute a novel class of directional bacterial surface transporters that can be diversified to specific tasks depending on the cognate cargo and machinery-specific accessories. Public Library of Science 2013-12-10 /pmc/articles/PMC3858216/ /pubmed/24339744 http://dx.doi.org/10.1371/journal.pbio.1001728 Text en © 2013 Wartel 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
Wartel, Morgane
Ducret, Adrien
Thutupalli, Shashi
Czerwinski, Fabian
Le Gall, Anne-Valérie
Mauriello, Emilia M. F.
Bergam, Ptissam
Brun, Yves V.
Shaevitz, Joshua
Mignot, Tâm
A Versatile Class of Cell Surface Directional Motors Gives Rise to Gliding Motility and Sporulation in Myxococcus xanthus
title A Versatile Class of Cell Surface Directional Motors Gives Rise to Gliding Motility and Sporulation in Myxococcus xanthus
title_full A Versatile Class of Cell Surface Directional Motors Gives Rise to Gliding Motility and Sporulation in Myxococcus xanthus
title_fullStr A Versatile Class of Cell Surface Directional Motors Gives Rise to Gliding Motility and Sporulation in Myxococcus xanthus
title_full_unstemmed A Versatile Class of Cell Surface Directional Motors Gives Rise to Gliding Motility and Sporulation in Myxococcus xanthus
title_short A Versatile Class of Cell Surface Directional Motors Gives Rise to Gliding Motility and Sporulation in Myxococcus xanthus
title_sort versatile class of cell surface directional motors gives rise to gliding motility and sporulation in myxococcus xanthus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858216/
https://www.ncbi.nlm.nih.gov/pubmed/24339744
http://dx.doi.org/10.1371/journal.pbio.1001728
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