Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway

Autophagy requires transport of autophagosomes to the perinuclear region. Here, the authors show that ORP1L localizes to autophagosomes and mediates formation of ER contact sites that prevent autophagosome transport and fusion with endocytic vesicles when cholesterol levels are low.

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Autores principales: Ruud H. Wijdeven, Hans Janssen, Leila Nahidiazar, Lennert Janssen, Kees Jalink, Ilana Berlin, Jacques Neefjes
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/e77004c3d02c4a53a915513558bd9cb4
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spelling oai:doaj.org-article:e77004c3d02c4a53a915513558bd9cb42021-12-02T17:31:19ZCholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway10.1038/ncomms118082041-1723https://doaj.org/article/e77004c3d02c4a53a915513558bd9cb42016-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms11808https://doaj.org/toc/2041-1723Autophagy requires transport of autophagosomes to the perinuclear region. Here, the authors show that ORP1L localizes to autophagosomes and mediates formation of ER contact sites that prevent autophagosome transport and fusion with endocytic vesicles when cholesterol levels are low.Ruud H. WijdevenHans JanssenLeila NahidiazarLennert JanssenKees JalinkIlana BerlinJacques NeefjesNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-14 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ruud H. Wijdeven
Hans Janssen
Leila Nahidiazar
Lennert Janssen
Kees Jalink
Ilana Berlin
Jacques Neefjes
Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway
description Autophagy requires transport of autophagosomes to the perinuclear region. Here, the authors show that ORP1L localizes to autophagosomes and mediates formation of ER contact sites that prevent autophagosome transport and fusion with endocytic vesicles when cholesterol levels are low.
format article
author Ruud H. Wijdeven
Hans Janssen
Leila Nahidiazar
Lennert Janssen
Kees Jalink
Ilana Berlin
Jacques Neefjes
author_facet Ruud H. Wijdeven
Hans Janssen
Leila Nahidiazar
Lennert Janssen
Kees Jalink
Ilana Berlin
Jacques Neefjes
author_sort Ruud H. Wijdeven
title Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway
title_short Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway
title_full Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway
title_fullStr Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway
title_full_unstemmed Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway
title_sort cholesterol and orp1l-mediated er contact sites control autophagosome transport and fusion with the endocytic pathway
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/e77004c3d02c4a53a915513558bd9cb4
work_keys_str_mv AT ruudhwijdeven cholesterolandorp1lmediatedercontactsitescontrolautophagosometransportandfusionwiththeendocyticpathway
AT hansjanssen cholesterolandorp1lmediatedercontactsitescontrolautophagosometransportandfusionwiththeendocyticpathway
AT leilanahidiazar cholesterolandorp1lmediatedercontactsitescontrolautophagosometransportandfusionwiththeendocyticpathway
AT lennertjanssen cholesterolandorp1lmediatedercontactsitescontrolautophagosometransportandfusionwiththeendocyticpathway
AT keesjalink cholesterolandorp1lmediatedercontactsitescontrolautophagosometransportandfusionwiththeendocyticpathway
AT ilanaberlin cholesterolandorp1lmediatedercontactsitescontrolautophagosometransportandfusionwiththeendocyticpathway
AT jacquesneefjes cholesterolandorp1lmediatedercontactsitescontrolautophagosometransportandfusionwiththeendocyticpathway
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