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Structure and functional role of dynein's microtubule-binding domain.


ABSTRACT: Dynein motors move various cargos along microtubules within the cytoplasm and power the beating of cilia and flagella. An unusual feature of dynein is that its microtubule-binding domain (MTBD) is separated from its ring-shaped AAA+ adenosine triphosphatase (ATPase) domain by a 15-nanometer coiled-coil stalk. We report the crystal structure of the mouse cytoplasmic dynein MTBD and a portion of the coiled coil, which supports a mechanism by which the ATPase domain and MTBD may communicate through a shift in the heptad registry of the coiled coil. Surprisingly, functional data suggest that the MTBD, and not the ATPase domain, is the main determinant of the direction of dynein motility.

SUBMITTER: Carter AP 

PROVIDER: S-EPMC2663340 | biostudies-literature | 2008 Dec

REPOSITORIES: biostudies-literature

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Structure and functional role of dynein's microtubule-binding domain.

Carter Andrew P AP   Garbarino Joan E JE   Wilson-Kubalek Elizabeth M EM   Shipley Wesley E WE   Cho Carol C   Milligan Ronald A RA   Vale Ronald D RD   Gibbons I R IR  

Science (New York, N.Y.) 20081201 5908


Dynein motors move various cargos along microtubules within the cytoplasm and power the beating of cilia and flagella. An unusual feature of dynein is that its microtubule-binding domain (MTBD) is separated from its ring-shaped AAA+ adenosine triphosphatase (ATPase) domain by a 15-nanometer coiled-coil stalk. We report the crystal structure of the mouse cytoplasmic dynein MTBD and a portion of the coiled coil, which supports a mechanism by which the ATPase domain and MTBD may communicate through  ...[more]

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