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Identification of molecular heterogeneity in SNX27–retromer-mediated endosome-to-plasma-membrane recycling

Retromer is a protein assembly that orchestrates the sorting of transmembrane cargo proteins into endosome-to-Golgi and endosome-to-plasma-membrane transport pathways. Here, we have employed quantitative proteomics to define the interactome of human VPS35, the core retromer component. This has ident...

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Autores principales: McGough, Ian J., Steinberg, Florian, Gallon, Matthew, Yatsu, Ayaka, Ohbayashi, Norihiko, Heesom, Kate J., Fukuda, Mitsunori, Cullen, Peter J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4231307/
https://www.ncbi.nlm.nih.gov/pubmed/25278552
http://dx.doi.org/10.1242/jcs.156299
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author McGough, Ian J.
Steinberg, Florian
Gallon, Matthew
Yatsu, Ayaka
Ohbayashi, Norihiko
Heesom, Kate J.
Fukuda, Mitsunori
Cullen, Peter J.
author_facet McGough, Ian J.
Steinberg, Florian
Gallon, Matthew
Yatsu, Ayaka
Ohbayashi, Norihiko
Heesom, Kate J.
Fukuda, Mitsunori
Cullen, Peter J.
author_sort McGough, Ian J.
collection PubMed
description Retromer is a protein assembly that orchestrates the sorting of transmembrane cargo proteins into endosome-to-Golgi and endosome-to-plasma-membrane transport pathways. Here, we have employed quantitative proteomics to define the interactome of human VPS35, the core retromer component. This has identified a number of new interacting proteins, including ankyrin-repeat domain 50 (ANKRD50), seriologically defined colon cancer antigen 3 (SDCCAG3) and VPS9-ankyrin-repeat protein (VARP, also known as ANKRD27). Depletion of these proteins resulted in trafficking defects of retromer-dependent cargo, but differential and cargo-specific effects suggested a surprising degree of functional heterogeneity in retromer-mediated endosome-to-plasma-membrane sorting. Extending this, suppression of the retromer-associated WASH complex did not uniformly affect retromer cargo, thereby confirming cargo-specific functions for retromer-interacting proteins. Further analysis of the retromer–VARP interaction identified a role for retromer in endosome-to-melanosome transport. Suppression of VPS35 led to mistrafficking of the melanogenic enzymes, tyrosinase and tryrosine-related protein 1 (Tyrp1), establishing that retromer acts in concert with VARP in this trafficking pathway. Overall, these data reveal hidden complexities in retromer-mediated sorting and open up new directions in our molecular understanding of this essential sorting complex.
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spelling pubmed-42313072014-11-25 Identification of molecular heterogeneity in SNX27–retromer-mediated endosome-to-plasma-membrane recycling McGough, Ian J. Steinberg, Florian Gallon, Matthew Yatsu, Ayaka Ohbayashi, Norihiko Heesom, Kate J. Fukuda, Mitsunori Cullen, Peter J. J Cell Sci Research Article Retromer is a protein assembly that orchestrates the sorting of transmembrane cargo proteins into endosome-to-Golgi and endosome-to-plasma-membrane transport pathways. Here, we have employed quantitative proteomics to define the interactome of human VPS35, the core retromer component. This has identified a number of new interacting proteins, including ankyrin-repeat domain 50 (ANKRD50), seriologically defined colon cancer antigen 3 (SDCCAG3) and VPS9-ankyrin-repeat protein (VARP, also known as ANKRD27). Depletion of these proteins resulted in trafficking defects of retromer-dependent cargo, but differential and cargo-specific effects suggested a surprising degree of functional heterogeneity in retromer-mediated endosome-to-plasma-membrane sorting. Extending this, suppression of the retromer-associated WASH complex did not uniformly affect retromer cargo, thereby confirming cargo-specific functions for retromer-interacting proteins. Further analysis of the retromer–VARP interaction identified a role for retromer in endosome-to-melanosome transport. Suppression of VPS35 led to mistrafficking of the melanogenic enzymes, tyrosinase and tryrosine-related protein 1 (Tyrp1), establishing that retromer acts in concert with VARP in this trafficking pathway. Overall, these data reveal hidden complexities in retromer-mediated sorting and open up new directions in our molecular understanding of this essential sorting complex. The Company of Biologists 2014-11-15 /pmc/articles/PMC4231307/ /pubmed/25278552 http://dx.doi.org/10.1242/jcs.156299 Text en © 2014. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
McGough, Ian J.
Steinberg, Florian
Gallon, Matthew
Yatsu, Ayaka
Ohbayashi, Norihiko
Heesom, Kate J.
Fukuda, Mitsunori
Cullen, Peter J.
Identification of molecular heterogeneity in SNX27–retromer-mediated endosome-to-plasma-membrane recycling
title Identification of molecular heterogeneity in SNX27–retromer-mediated endosome-to-plasma-membrane recycling
title_full Identification of molecular heterogeneity in SNX27–retromer-mediated endosome-to-plasma-membrane recycling
title_fullStr Identification of molecular heterogeneity in SNX27–retromer-mediated endosome-to-plasma-membrane recycling
title_full_unstemmed Identification of molecular heterogeneity in SNX27–retromer-mediated endosome-to-plasma-membrane recycling
title_short Identification of molecular heterogeneity in SNX27–retromer-mediated endosome-to-plasma-membrane recycling
title_sort identification of molecular heterogeneity in snx27–retromer-mediated endosome-to-plasma-membrane recycling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4231307/
https://www.ncbi.nlm.nih.gov/pubmed/25278552
http://dx.doi.org/10.1242/jcs.156299
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