Coordinated Actions of Actin and BAR Proteins Upstream of Dynamin at Endocytic Clathrin-Coated Pits

The GTPase dynamin, a key player in endocytic membrane fission, interacts with numerous proteins that regulate actin dynamics and generate/sense membrane curvature. To determine the functional relationship between these proteins and dynamin, we have analyzed endocytic intermediates that accumulate i...

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Veröffentlicht in:Developmental cell 2009-12, Vol.17 (6), p.811-822
Hauptverfasser: Ferguson, Shawn, Raimondi, Andrea, Paradise, Summer, Shen, Hongying, Mesaki, Kumi, Ferguson, Agnes, Destaing, Olivier, Ko, Genevieve, Takasaki, Junko, Cremona, Ottavio, O' Toole, Eileen, De Camilli, Pietro
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Sprache:eng
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Zusammenfassung:The GTPase dynamin, a key player in endocytic membrane fission, interacts with numerous proteins that regulate actin dynamics and generate/sense membrane curvature. To determine the functional relationship between these proteins and dynamin, we have analyzed endocytic intermediates that accumulate in cells that lack dynamin (derived from dynamin 1 and 2 double conditional knockout mice). In these cells, actin-nucleating proteins, actin, and BAR domain proteins accumulate at the base of arrested endocytic clathrin-coated pits, where they support the growth of dynamic long tubular necks. These results, which we show reflect the sequence of events in wild-type cells, demonstrate a concerted action of these proteins prior to, and independent of, dynamin and emphasize similarities between clathrin-mediated endocytosis in yeast and higher eukaryotes. Our data also demonstrate that the relationship between dynamin and actin is intimately connected to dynamin's endocytic role and that dynamin terminates a powerful actin- and BAR protein-dependent tubulating activity.
ISSN:1534-5807
1878-1551
DOI:10.1016/j.devcel.2009.11.005