Literature DB >> 21841790

Actin dynamics counteract membrane tension during clathrin-mediated endocytosis.

Steeve Boulant1, Comert Kural, Jean-Christophe Zeeh, Florent Ubelmann, Tomas Kirchhausen.   

Abstract

Clathrin-mediated endocytosis is independent of actin dynamics in many circumstances but requires actin polymerization in others. We show that membrane tension determines the actin dependence of clathrin-coat assembly. As found previously, clathrin assembly supports formation of mature coated pits in the absence of actin polymerization on both dorsal and ventral surfaces of non-polarized mammalian cells, and also on basolateral surfaces of polarized cells. Actin engagement is necessary, however, to complete membrane deformation into a coated pit on apical surfaces of polarized cells and, more generally, on the surface of any cell in which the plasma membrane is under tension from osmotic swelling or mechanical stretching. We use these observations to alter actin dependence experimentally and show that resistance of the membrane to propagation of the clathrin lattice determines the distinction between 'actin dependent and 'actin independent'. We also find that light-chain-bound Hip1R mediates actin engagement. These data thus provide a unifying explanation for the role of actin dynamics in coated-pit budding.

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Year:  2011        PMID: 21841790      PMCID: PMC3167020          DOI: 10.1038/ncb2307

Source DB:  PubMed          Journal:  Nat Cell Biol        ISSN: 1465-7392            Impact factor:   28.824


  45 in total

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Journal:  Nat Rev Mol Cell Biol       Date:  2006-06       Impact factor: 94.444

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Review 4.  Cease-fire at the leading edge: new perspectives on actin filament branching, debranching, and cross-linking.

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Review 8.  The non-canonical roles of clathrin and actin in pathogen internalization, egress and spread.

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Review 9.  Dynamics and instabilities of lipid bilayer membrane shapes.

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10.  The Sla1 adaptor-clathrin interaction regulates coat formation and progression of endocytosis.

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