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Vps501, a novel vacuolar SNX‐BAR protein cooperates with the SEA complex to regulate TORC1 signaling

The sorting nexins (SNXs), constitute a diverse family of molecules that play varied roles in membrane trafficking, cell signaling, membrane remodeling, organelle motility and autophagy. In particular, the SNX‐Bin‐Amphiphysin‐Rvs (BAR) proteins, a SNX subfamily characterized by a C‐terminal dimeric...

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Autores principales: Goyal, Shreya, Segarra, Verónica A.,  , Nitika, Stecher, Aaron M., Truman, Andrew W., Reitzel, Adam M., Chi, Richard J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons A/S 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9305297/
https://www.ncbi.nlm.nih.gov/pubmed/35098628
http://dx.doi.org/10.1111/tra.12833
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author Goyal, Shreya
Segarra, Verónica A.
 , Nitika
Stecher, Aaron M.
Truman, Andrew W.
Reitzel, Adam M.
Chi, Richard J.
author_facet Goyal, Shreya
Segarra, Verónica A.
 , Nitika
Stecher, Aaron M.
Truman, Andrew W.
Reitzel, Adam M.
Chi, Richard J.
author_sort Goyal, Shreya
collection PubMed
description The sorting nexins (SNXs), constitute a diverse family of molecules that play varied roles in membrane trafficking, cell signaling, membrane remodeling, organelle motility and autophagy. In particular, the SNX‐Bin‐Amphiphysin‐Rvs (BAR) proteins, a SNX subfamily characterized by a C‐terminal dimeric BAR lipid curvature domain and a conserved Phox‐homology domain, are of great interest. In budding yeast, many SNX‐BAR proteins have well‐characterized endo‐vacuolar trafficking roles. Phylogenetic analyses allowed us to identify an additional SNX‐BAR protein, Vps501, with a novel endo‐vacuolar role. We report that Vps501 uniquely localizes to the vacuolar membrane and has physical and genetic interactions with the SEA complex to regulate TORC1 inactivation. We found cells displayed a severe deficiency in starvation‐induced/nonselective autophagy only when SEA complex subunits are ablated in combination with Vps501, indicating a cooperative role with the SEA complex during TORC1 signaling during autophagy induction. Additionally, we found the SEACIT complex becomes destabilized in vps501Δsea1Δ cells, which resulted in aberrant endosomal TORC1 activity and subsequent Atg13 hyperphosphorylation. We have also discovered that the vacuolar localization of Vps501 is dependent upon a direct interaction with Sea1 and a unique lipid binding specificity that is also required for its function.
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spelling pubmed-93052972022-07-28 Vps501, a novel vacuolar SNX‐BAR protein cooperates with the SEA complex to regulate TORC1 signaling Goyal, Shreya Segarra, Verónica A.  , Nitika Stecher, Aaron M. Truman, Andrew W. Reitzel, Adam M. Chi, Richard J. Traffic Research Articles The sorting nexins (SNXs), constitute a diverse family of molecules that play varied roles in membrane trafficking, cell signaling, membrane remodeling, organelle motility and autophagy. In particular, the SNX‐Bin‐Amphiphysin‐Rvs (BAR) proteins, a SNX subfamily characterized by a C‐terminal dimeric BAR lipid curvature domain and a conserved Phox‐homology domain, are of great interest. In budding yeast, many SNX‐BAR proteins have well‐characterized endo‐vacuolar trafficking roles. Phylogenetic analyses allowed us to identify an additional SNX‐BAR protein, Vps501, with a novel endo‐vacuolar role. We report that Vps501 uniquely localizes to the vacuolar membrane and has physical and genetic interactions with the SEA complex to regulate TORC1 inactivation. We found cells displayed a severe deficiency in starvation‐induced/nonselective autophagy only when SEA complex subunits are ablated in combination with Vps501, indicating a cooperative role with the SEA complex during TORC1 signaling during autophagy induction. Additionally, we found the SEACIT complex becomes destabilized in vps501Δsea1Δ cells, which resulted in aberrant endosomal TORC1 activity and subsequent Atg13 hyperphosphorylation. We have also discovered that the vacuolar localization of Vps501 is dependent upon a direct interaction with Sea1 and a unique lipid binding specificity that is also required for its function. John Wiley & Sons A/S 2022-02-15 2022-04 /pmc/articles/PMC9305297/ /pubmed/35098628 http://dx.doi.org/10.1111/tra.12833 Text en © 2022 The Authors. Traffic published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Goyal, Shreya
Segarra, Verónica A.
 , Nitika
Stecher, Aaron M.
Truman, Andrew W.
Reitzel, Adam M.
Chi, Richard J.
Vps501, a novel vacuolar SNX‐BAR protein cooperates with the SEA complex to regulate TORC1 signaling
title Vps501, a novel vacuolar SNX‐BAR protein cooperates with the SEA complex to regulate TORC1 signaling
title_full Vps501, a novel vacuolar SNX‐BAR protein cooperates with the SEA complex to regulate TORC1 signaling
title_fullStr Vps501, a novel vacuolar SNX‐BAR protein cooperates with the SEA complex to regulate TORC1 signaling
title_full_unstemmed Vps501, a novel vacuolar SNX‐BAR protein cooperates with the SEA complex to regulate TORC1 signaling
title_short Vps501, a novel vacuolar SNX‐BAR protein cooperates with the SEA complex to regulate TORC1 signaling
title_sort vps501, a novel vacuolar snx‐bar protein cooperates with the sea complex to regulate torc1 signaling
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9305297/
https://www.ncbi.nlm.nih.gov/pubmed/35098628
http://dx.doi.org/10.1111/tra.12833
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