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Structural insights into dynamin-mediated membrane fission.

by: Katja Faelber, Martin Held, Song Gao, York Posor, Volker Haucke, Frank Noé, Oliver Daumke
Structure (London, England : 1993), Vol. 20, No. 10. (10 October 2012), pp. 1621-1628, doi:10.1016/j.str.2012.08.028  Key: citeulike:11463729

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Abstract

Dynamin is a multidomain mechanochemical guanine triphosphatase that catalyzes membrane scission, most notably of clathrin-coated endocytic vesicles. A number of recent publications have provided structural and mechanistic insights into the formation of helical dynamin filaments assembled by dynamic interactions of multiple domains within dynamin. As a prerequisite for membrane scission, this oligomer undergoes nucleotide-triggered large scale dynamic rearrangements. Here, we review these structural findings and discuss how the architecture of dynamin is poised for the assembly into right-handed helical filaments. Based on these data, we propose a structure-based model for dynamin-mediated scission of membranes. Copyright © 2012 Elsevier Ltd. All rights reserved.


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