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The mitotic kinesin CENP-E is a processive transport motor.


ABSTRACT: In vivo studies suggest that centromeric protein E (CENP-E), a kinesin-7 family member, plays a key role in the movement of chromosomes toward the metaphase plate during mitosis. How CENP-E accomplishes this crucial task, however, is not clear. Here we present single-molecule measurements of CENP-E that demonstrate that this motor moves processively toward the plus end of microtubules, with an average run length of 2.6 +/- 0.2 mum, in a hand-over-hand fashion, taking 8-nm steps with a stall force of 6 +/- 0.1 pN. The ATP dependence of motor velocity obeys Michaelis-Menten kinetics with K(M,ATP) = 35 +/- 5 muM. All of these features are remarkably similar to those for kinesin-1-a highly processive transport motor. We, therefore, propose that CENP-E transports chromosomes in a manner analogous to how kinesin-1 transports cytoplasmic vesicles.

SUBMITTER: Yardimci H 

PROVIDER: S-EPMC2329722 | biostudies-literature | 2008 Apr

REPOSITORIES: biostudies-literature

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The mitotic kinesin CENP-E is a processive transport motor.

Yardimci Hasan H   van Duffelen Marilyn M   Mao Yinghui Y   Rosenfeld Steven S SS   Selvin Paul R PR  

Proceedings of the National Academy of Sciences of the United States of America 20080421 16


In vivo studies suggest that centromeric protein E (CENP-E), a kinesin-7 family member, plays a key role in the movement of chromosomes toward the metaphase plate during mitosis. How CENP-E accomplishes this crucial task, however, is not clear. Here we present single-molecule measurements of CENP-E that demonstrate that this motor moves processively toward the plus end of microtubules, with an average run length of 2.6 +/- 0.2 mum, in a hand-over-hand fashion, taking 8-nm steps with a stall forc  ...[more]

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