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Phosphorylation Regulates the Endocytic Function of the Yeast Dynamin-Related Protein Vps1

The family of dynamin proteins is known to function in many eukaryotic membrane fusion and fission events. The yeast dynamin-related protein Vps1 functions at several stages of membrane trafficking, including Golgi apparatus to endosome and vacuole, peroxisomal fission, and endocytic scission. We ha...

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Autores principales: Smaczynska-de Rooij, Iwona I., Marklew, Christopher J., Allwood, Ellen G., Palmer, Sarah E., Booth, Wesley I., Mishra, Ritu, Goldberg, Martin W., Ayscough, Kathryn R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4760221/
https://www.ncbi.nlm.nih.gov/pubmed/26711254
http://dx.doi.org/10.1128/MCB.00833-15
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author Smaczynska-de Rooij, Iwona I.
Marklew, Christopher J.
Allwood, Ellen G.
Palmer, Sarah E.
Booth, Wesley I.
Mishra, Ritu
Goldberg, Martin W.
Ayscough, Kathryn R.
author_facet Smaczynska-de Rooij, Iwona I.
Marklew, Christopher J.
Allwood, Ellen G.
Palmer, Sarah E.
Booth, Wesley I.
Mishra, Ritu
Goldberg, Martin W.
Ayscough, Kathryn R.
author_sort Smaczynska-de Rooij, Iwona I.
collection PubMed
description The family of dynamin proteins is known to function in many eukaryotic membrane fusion and fission events. The yeast dynamin-related protein Vps1 functions at several stages of membrane trafficking, including Golgi apparatus to endosome and vacuole, peroxisomal fission, and endocytic scission. We have previously shown that in its endocytic role, Vps1 functions with the amphiphysin heterodimer Rvs161/Rvs167 to facilitate scission and release of vesicles. Phosphoproteome studies of Saccharomyces cerevisiae have identified a phosphorylation site in Vps1 at serine 599. In this study, we confirmed this phosphorylation event, and we reveal that, like Rvs167, Vps1 can be phosphorylated by the yeast cyclin-associated kinase Pho85 in vivo and in vitro. The importance of this posttranslational modification was revealed when mutagenesis of S599 to a phosphomimetic or nonphosphorylatable form caused defects in endocytosis but not in other functions associated with Vps1. Mutation to nonphosphorylatable valine inhibited the Rvs167 interaction, while both S599V and S599D caused defects in vesicle scission, as shown by both live-cell imaging and electron microscopy of endocytic invaginations. Our data support a model in which phosphorylation and dephosphorylation of Vps1 promote distinct interactions and highlight the importance of such regulatory events in facilitating sequential progression of the endocytic process.
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spelling pubmed-47602212016-03-02 Phosphorylation Regulates the Endocytic Function of the Yeast Dynamin-Related Protein Vps1 Smaczynska-de Rooij, Iwona I. Marklew, Christopher J. Allwood, Ellen G. Palmer, Sarah E. Booth, Wesley I. Mishra, Ritu Goldberg, Martin W. Ayscough, Kathryn R. Mol Cell Biol Articles The family of dynamin proteins is known to function in many eukaryotic membrane fusion and fission events. The yeast dynamin-related protein Vps1 functions at several stages of membrane trafficking, including Golgi apparatus to endosome and vacuole, peroxisomal fission, and endocytic scission. We have previously shown that in its endocytic role, Vps1 functions with the amphiphysin heterodimer Rvs161/Rvs167 to facilitate scission and release of vesicles. Phosphoproteome studies of Saccharomyces cerevisiae have identified a phosphorylation site in Vps1 at serine 599. In this study, we confirmed this phosphorylation event, and we reveal that, like Rvs167, Vps1 can be phosphorylated by the yeast cyclin-associated kinase Pho85 in vivo and in vitro. The importance of this posttranslational modification was revealed when mutagenesis of S599 to a phosphomimetic or nonphosphorylatable form caused defects in endocytosis but not in other functions associated with Vps1. Mutation to nonphosphorylatable valine inhibited the Rvs167 interaction, while both S599V and S599D caused defects in vesicle scission, as shown by both live-cell imaging and electron microscopy of endocytic invaginations. Our data support a model in which phosphorylation and dephosphorylation of Vps1 promote distinct interactions and highlight the importance of such regulatory events in facilitating sequential progression of the endocytic process. American Society for Microbiology 2016-02-16 /pmc/articles/PMC4760221/ /pubmed/26711254 http://dx.doi.org/10.1128/MCB.00833-15 Text en Copyright © 2016 Smaczynska-de Rooij et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 3.0 Unported license (http://creativecommons.org/licenses/by/3.0/) .
spellingShingle Articles
Smaczynska-de Rooij, Iwona I.
Marklew, Christopher J.
Allwood, Ellen G.
Palmer, Sarah E.
Booth, Wesley I.
Mishra, Ritu
Goldberg, Martin W.
Ayscough, Kathryn R.
Phosphorylation Regulates the Endocytic Function of the Yeast Dynamin-Related Protein Vps1
title Phosphorylation Regulates the Endocytic Function of the Yeast Dynamin-Related Protein Vps1
title_full Phosphorylation Regulates the Endocytic Function of the Yeast Dynamin-Related Protein Vps1
title_fullStr Phosphorylation Regulates the Endocytic Function of the Yeast Dynamin-Related Protein Vps1
title_full_unstemmed Phosphorylation Regulates the Endocytic Function of the Yeast Dynamin-Related Protein Vps1
title_short Phosphorylation Regulates the Endocytic Function of the Yeast Dynamin-Related Protein Vps1
title_sort phosphorylation regulates the endocytic function of the yeast dynamin-related protein vps1
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4760221/
https://www.ncbi.nlm.nih.gov/pubmed/26711254
http://dx.doi.org/10.1128/MCB.00833-15
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