Control of microtubule dynamics by the antagonistic activities of XMAP215 and XKCM1 in Xenopus egg extracts

Microtubules are dynamic polymers that move stochastically between periods of growth and shrinkage, a property known as dynamic instability. Here, to investigate the mechanisms regulating microtubule dynamics in Xenopus egg extracts, we have cloned the complementary DNA encoding the microtubule-asso...

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Veröffentlicht in:Nature cell biology 2000-01, Vol.2 (1), p.13-19
Hauptverfasser: Hyman, Anthony A, Tournebize, Régis, Popov, Andrei, Kinoshita, Kazuhisa, Ashford, Anthony J, Rybina, Sonja, Pozniakovsky, Andrei, Mayer, Thomas U, Walczak, Claire E, Karsenti, Eric
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Sprache:eng
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Zusammenfassung:Microtubules are dynamic polymers that move stochastically between periods of growth and shrinkage, a property known as dynamic instability. Here, to investigate the mechanisms regulating microtubule dynamics in Xenopus egg extracts, we have cloned the complementary DNA encoding the microtubule-associated protein XMAP215 and investigated the function of the XMAP215 protein. Immunodepletion of XMAP215 indicated that it is a major microtubule-stabilizing factor in Xenopus egg extracts. During interphase, XMAP215 stabilizes microtubules primarily by opposing the activity of the destabilizing factor XKCM1, a member of the kinesin superfamily. These results indicate that microtubule dynamics in Xenopus egg extracts are regulated by a balance between a stabilizing factor, XMAP215, and a destabilizing factor, XKCM1.
ISSN:1465-7392
1476-4679
1476-4679
DOI:10.1038/71330