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Structure of the complex of a mitotic kinesin with its calcium binding regulator.


ABSTRACT: Much of the transport, tension, and movement in mitosis depends on kinesins, the ATP-powered microtubule-based motors. We report the crystal structure of a kinesin complex, the mitotic kinesin KCBP bound to its principal regulator KIC. Shown to be a Ca(2+) sensor, KIC works as an allosteric trap. Extensive intermolecular interactions with KIC stabilize kinesin in its ADP-bound conformation. A critical component of the kinesin motile mechanism, called the neck mimic, switches its association from kinesin to KIC, stalling the motor. KIC denies access of the motor to its track by steric interference. Two major features of this regulation, allosteric trapping and steric blocking, are likely to be general for all kinesins.

SUBMITTER: Vinogradova MV 

PROVIDER: S-EPMC2688874 | biostudies-literature | 2009 May

REPOSITORIES: biostudies-literature

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Structure of the complex of a mitotic kinesin with its calcium binding regulator.

Vinogradova Maia V MV   Malanina Galina G GG   Reddy Anireddy S N AS   Fletterick Robert J RJ  

Proceedings of the National Academy of Sciences of the United States of America 20090505 20


Much of the transport, tension, and movement in mitosis depends on kinesins, the ATP-powered microtubule-based motors. We report the crystal structure of a kinesin complex, the mitotic kinesin KCBP bound to its principal regulator KIC. Shown to be a Ca(2+) sensor, KIC works as an allosteric trap. Extensive intermolecular interactions with KIC stabilize kinesin in its ADP-bound conformation. A critical component of the kinesin motile mechanism, called the neck mimic, switches its association from  ...[more]

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