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Functional recruitment of dynamin requires multimeric interactions for efficient endocytosis

Nat Commun.. 2019; 
Rosendale M1,2,3, Van TNN1,2,4, Grillo-Bosch D1,2, Sposini S1,2, Claverie L1,2, Gauthereau I1,2, Claverol S5, Choquet D1,2,6, Sainlos M7,8, Perrais D9,10.
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Peptide Synthesis 9-fluorenylmethoxy-carbonyl (Fmoc)-protected amino-acids were from GenScript USA Inc. 2-(1H-Benzotriazol-1-yl)-1,1,3,3-tetramethyluronoium hexafluorphosphate (HBTU), [N1-(Fmoc)-1,13-diamino- 4,7,10-trioxatridecan-succinamic acid (Fmoc-TTDS) and Fmoc-Lys(N3)-OH were from Iris Biotech GmbH. Get A Quote

摘要

During clathrin mediated endocytosis (CME), the concerted action of dynamin and its interacting partners drives membrane scission. Essential interactions occur between the proline/arginine-rich domain of dynamin (dynPRD) and the Src-homology domain 3 (SH3) of various proteins including amphiphysins. Here we show that multiple SH3 domains must bind simultaneously to dynPRD through three adjacent motifs for dynamin's efficient recruitment and function. First, we show that mutant dynamins modified in a single motif, including the central amphiphysin SH3 (amphSH3) binding motif, partially rescue CME in dynamin triple knock-out cells. However, mutating two motifs largely prevents that ability. Furthermore, we design... More

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