Endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.

Several studies have suggested crosstalk between different clathrin-independent endocytic pathways. However, the molecular mechanisms and functional relevance of these interactions are unclear. Caveolins and cavins are crucial components of caveolae, specialized microdomains that also constitute an...

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Main Authors: Natasha Chaudhary, Guillermo A Gomez, Mark T Howes, Harriet P Lo, Kerrie-Ann McMahon, James A Rae, Nicole L Schieber, Michelle M Hill, Katharina Gaus, Alpha S Yap, Robert G Parton
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-04-01
Series:PLoS Biology
Online Access:http://europepmc.org/articles/PMC3979662?pdf=render
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spelling doaj-b65d5687fee24cb6b8b50d7a8d75d5752021-07-02T05:07:56ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852014-04-01124e100183210.1371/journal.pbio.1001832Endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.Natasha ChaudharyGuillermo A GomezMark T HowesHarriet P LoKerrie-Ann McMahonJames A RaeNicole L SchieberMichelle M HillKatharina GausAlpha S YapRobert G PartonSeveral studies have suggested crosstalk between different clathrin-independent endocytic pathways. However, the molecular mechanisms and functional relevance of these interactions are unclear. Caveolins and cavins are crucial components of caveolae, specialized microdomains that also constitute an endocytic route. Here we show that specific caveolar proteins are independently acting negative regulators of clathrin-independent endocytosis. Cavin-1 and Cavin-3, but not Cavin-2 or Cavin-4, are potent inhibitors of the clathrin-independent carriers/GPI-AP enriched early endosomal compartment (CLIC/GEEC) endocytic pathway, in a process independent of caveola formation. Caveolin-1 (CAV1) and CAV3 also inhibit the CLIC/GEEC pathway upon over-expression. Expression of caveolar protein leads to reduction in formation of early CLIC/GEEC carriers, as detected by quantitative electron microscopy analysis. Furthermore, the CLIC/GEEC pathway is upregulated in cells lacking CAV1/Cavin-1 or with reduced expression of Cavin-1 and Cavin-3. Inhibition by caveolins can be mimicked by the isolated caveolin scaffolding domain and is associated with perturbed diffusion of lipid microdomain components, as revealed by fluorescence recovery after photobleaching (FRAP) studies. In the absence of cavins (and caveolae) CAV1 is itself endocytosed preferentially through the CLIC/GEEC pathway, but the pathway loses polarization and sorting attributes with consequences for membrane dynamics and endocytic polarization in migrating cells and adult muscle tissue. We also found that noncaveolar Cavin-1 can act as a modulator for the activity of the key regulator of the CLIC/GEEC pathway, Cdc42. This work provides new insights into the regulation of noncaveolar clathrin-independent endocytosis by specific caveolar proteins, illustrating multiple levels of crosstalk between these pathways. We show for the first time a role for specific cavins in regulating the CLIC/GEEC pathway, provide a new tool to study this pathway, identify caveola-independent functions of the cavins and propose a novel mechanism for inhibition of the CLIC/GEEC pathway by caveolin.http://europepmc.org/articles/PMC3979662?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Natasha Chaudhary
Guillermo A Gomez
Mark T Howes
Harriet P Lo
Kerrie-Ann McMahon
James A Rae
Nicole L Schieber
Michelle M Hill
Katharina Gaus
Alpha S Yap
Robert G Parton
spellingShingle Natasha Chaudhary
Guillermo A Gomez
Mark T Howes
Harriet P Lo
Kerrie-Ann McMahon
James A Rae
Nicole L Schieber
Michelle M Hill
Katharina Gaus
Alpha S Yap
Robert G Parton
Endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.
PLoS Biology
author_facet Natasha Chaudhary
Guillermo A Gomez
Mark T Howes
Harriet P Lo
Kerrie-Ann McMahon
James A Rae
Nicole L Schieber
Michelle M Hill
Katharina Gaus
Alpha S Yap
Robert G Parton
author_sort Natasha Chaudhary
title Endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.
title_short Endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.
title_full Endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.
title_fullStr Endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.
title_full_unstemmed Endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.
title_sort endocytic crosstalk: cavins, caveolins, and caveolae regulate clathrin-independent endocytosis.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2014-04-01
description Several studies have suggested crosstalk between different clathrin-independent endocytic pathways. However, the molecular mechanisms and functional relevance of these interactions are unclear. Caveolins and cavins are crucial components of caveolae, specialized microdomains that also constitute an endocytic route. Here we show that specific caveolar proteins are independently acting negative regulators of clathrin-independent endocytosis. Cavin-1 and Cavin-3, but not Cavin-2 or Cavin-4, are potent inhibitors of the clathrin-independent carriers/GPI-AP enriched early endosomal compartment (CLIC/GEEC) endocytic pathway, in a process independent of caveola formation. Caveolin-1 (CAV1) and CAV3 also inhibit the CLIC/GEEC pathway upon over-expression. Expression of caveolar protein leads to reduction in formation of early CLIC/GEEC carriers, as detected by quantitative electron microscopy analysis. Furthermore, the CLIC/GEEC pathway is upregulated in cells lacking CAV1/Cavin-1 or with reduced expression of Cavin-1 and Cavin-3. Inhibition by caveolins can be mimicked by the isolated caveolin scaffolding domain and is associated with perturbed diffusion of lipid microdomain components, as revealed by fluorescence recovery after photobleaching (FRAP) studies. In the absence of cavins (and caveolae) CAV1 is itself endocytosed preferentially through the CLIC/GEEC pathway, but the pathway loses polarization and sorting attributes with consequences for membrane dynamics and endocytic polarization in migrating cells and adult muscle tissue. We also found that noncaveolar Cavin-1 can act as a modulator for the activity of the key regulator of the CLIC/GEEC pathway, Cdc42. This work provides new insights into the regulation of noncaveolar clathrin-independent endocytosis by specific caveolar proteins, illustrating multiple levels of crosstalk between these pathways. We show for the first time a role for specific cavins in regulating the CLIC/GEEC pathway, provide a new tool to study this pathway, identify caveola-independent functions of the cavins and propose a novel mechanism for inhibition of the CLIC/GEEC pathway by caveolin.
url http://europepmc.org/articles/PMC3979662?pdf=render
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