Building endocytic pits without clathrin.
Identifieur interne : 003096 ( Main/Exploration ); précédent : 003095; suivant : 003097Building endocytic pits without clathrin.
Auteurs : Ludger Johannes [France] ; Robert G. Parton [Australie] ; Patricia Bassereau [France] ; Satyajit Mayor [Inde]Source :
- Nature reviews. Molecular cell biology [ 1471-0080 ] ; 2015.
Descripteurs français
- KwdFr :
- MESH :
- métabolisme : Actines, Clathrine, Lectines, Membrane cellulaire.
- Animaux, Endocytose, Humains, Membrane cellulaire, Voies et réseaux métaboliques.
English descriptors
- KwdEn :
- MESH :
- chemical , metabolism : Actins, Clathrin, Lectins.
- chemistry : Cell Membrane.
- metabolism : Cell Membrane.
- Animals, Endocytosis, Humans, Metabolic Networks and Pathways.
Abstract
How endocytic pits are built in clathrin- and caveolin-independent endocytosis still remains poorly understood. Recent insight suggests that different forms of clathrin-independent endocytosis might involve the actin-driven focusing of membrane constituents, the lectin-glycosphingolipid-dependent construction of endocytic nanoenvironments, and Bin-Amphiphysin-Rvs (BAR) domain proteins serving as scaffolding modules. We discuss the need for different types of internalization processes in the context of diverse cellular functions, the existence of clathrin-independent mechanisms of cargo recruitment and membrane bending from a biological and physical perspective, and finally propose a generic scheme for the formation of clathrin-independent endocytic pits.
DOI: 10.1038/nrm3968
PubMed: 25857812
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en">How endocytic pits are built in clathrin- and caveolin-independent endocytosis still remains poorly understood. Recent insight suggests that different forms of clathrin-independent endocytosis might involve the actin-driven focusing of membrane constituents, the lectin-glycosphingolipid-dependent construction of endocytic nanoenvironments, and Bin-Amphiphysin-Rvs (BAR) domain proteins serving as scaffolding modules. We discuss the need for different types of internalization processes in the context of diverse cellular functions, the existence of clathrin-independent mechanisms of cargo recruitment and membrane bending from a biological and physical perspective, and finally propose a generic scheme for the formation of clathrin-independent endocytic pits.</div>
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