A Dynamic Actin Cytoskeleton Functions at Multiple Stages of Clathrin-mediated Endocytosis

  • Defne Yarar
    Department of Cell Biology, The Scripps Research Institute, La Jolla, CA 92037
  • Clare M. Waterman-Storer
    Department of Cell Biology, The Scripps Research Institute, La Jolla, CA 92037
  • Sandra L. Schmid
    Department of Cell Biology, The Scripps Research Institute, La Jolla, CA 92037

Abstract

<jats:p>Clathrin-mediated endocytosis in mammalian cells is critical for a variety of cellular processes including nutrient uptake and cell surface receptor down-regulation. Despite the findings that numerous endocytic accessory proteins directly or indirectly regulate actin dynamics and that actin assembly is spatially and temporally coordinated with endocytosis, direct functional evidence for a role of actin during clathrin-coated vesicle formation is lacking. Here, we take parallel biochemical and microscopic approaches to address the contribution of actin polymerization/depolymerization dynamics to clathrin-mediated endocytosis. When measured using live-cell fluorescence microscopy, disruption of the F-actin assembly and disassembly cycle with latrunculin A or jasplakinolide results in near complete cessation of all aspects of clathrin-coated structure (CCS) dynamics. Stage-specific biochemical assays and quantitative fluorescence and electron microscopic analyses establish that F-actin dynamics are required for multiple distinct stages of clathrin-coated vesicle formation, including coated pit formation, constriction, and internalization. In addition, F-actin dynamics are required for observed diverse CCS behaviors, including splitting of CCSs from larger CCSs, merging of CCSs, and lateral mobility on the cell surface. Our results demonstrate a key role for actin during clathrin-mediated endocytosis in mammalian cells.</jats:p>

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Details 詳細情報について

  • CRID
    1362262944214647680
  • NII Article ID
    30018379729
  • DOI
    10.1091/mbc.e04-09-0774
  • ISSN
    19394586
    10591524
  • Data Source
    • Crossref
    • CiNii Articles

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