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Phosphorylation by Cdk1 Increases the Binding of Eg5 to Microtubules In Vitro and in Xenopus Egg Extract Spindles

BACKGROUND: Motor proteins from the kinesin-5 subfamily play an essential role in spindle assembly during cell division of most organisms. These motors crosslink and slide microtubules in the spindle. Kinesin-5 motors are phosphorylated at a conserved site by Cyclin-dependent kinase 1 (Cdk1) during...

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Autores principales: Cahu, Julie, Olichon, Aurelien, Hentrich, Christian, Schek, Henry, Drinjakovic, Jovana, Zhang, Cunjie, Doherty-Kirby, Amanda, Lajoie, Gilles, Surrey, Thomas
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2592692/
https://www.ncbi.nlm.nih.gov/pubmed/19079595
http://dx.doi.org/10.1371/journal.pone.0003936
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author Cahu, Julie
Olichon, Aurelien
Hentrich, Christian
Schek, Henry
Drinjakovic, Jovana
Zhang, Cunjie
Doherty-Kirby, Amanda
Lajoie, Gilles
Surrey, Thomas
author_facet Cahu, Julie
Olichon, Aurelien
Hentrich, Christian
Schek, Henry
Drinjakovic, Jovana
Zhang, Cunjie
Doherty-Kirby, Amanda
Lajoie, Gilles
Surrey, Thomas
author_sort Cahu, Julie
collection PubMed
description BACKGROUND: Motor proteins from the kinesin-5 subfamily play an essential role in spindle assembly during cell division of most organisms. These motors crosslink and slide microtubules in the spindle. Kinesin-5 motors are phosphorylated at a conserved site by Cyclin-dependent kinase 1 (Cdk1) during mitosis. Xenopus laevis kinesin-5 has also been reported to be phosphorylated by Aurora A in vitro. METHODOLOGY/PRINCIPAL FINDINGS: We investigate here the effect of these phosphorylations on kinesin-5 from Xenopus laevis, called Eg5. We find that phosphorylation at threonine 937 in the C-terminal tail of Eg5 by Cdk1 does not affect the velocity of Eg5, but strongly increases its binding to microtubules assembled in buffer. Likewise, this phosphorylation promotes binding of Eg5 to microtubules in Xenopus egg extract spindles. This enhancement of binding elevates the amount of Eg5 in spindles above a critical level required for bipolar spindle formation. We find furthermore that phosphorylation of Xenopus laevis Eg5 by Aurora A at serine 543 in the stalk is not required for spindle formation. CONCLUSIONS/SIGNIFICANCE: These results show that phosphorylation of Eg5 by Cdk1 has a direct effect on the interaction of this motor with microtubules. In egg extract, phosphorylation of Eg5 by Cdk1 ensures that the amount of Eg5 in the spindle is above a level that is required for spindle formation. This enhanced targeting to the spindle appears therefore to be, at least in part, a direct consequence of the enhanced binding of Eg5 to microtubules upon phosphorylation by Cdk1. These findings advance our understanding of the regulation of this essential mitotic motor protein.
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spelling pubmed-25926922008-12-15 Phosphorylation by Cdk1 Increases the Binding of Eg5 to Microtubules In Vitro and in Xenopus Egg Extract Spindles Cahu, Julie Olichon, Aurelien Hentrich, Christian Schek, Henry Drinjakovic, Jovana Zhang, Cunjie Doherty-Kirby, Amanda Lajoie, Gilles Surrey, Thomas PLoS One Research Article BACKGROUND: Motor proteins from the kinesin-5 subfamily play an essential role in spindle assembly during cell division of most organisms. These motors crosslink and slide microtubules in the spindle. Kinesin-5 motors are phosphorylated at a conserved site by Cyclin-dependent kinase 1 (Cdk1) during mitosis. Xenopus laevis kinesin-5 has also been reported to be phosphorylated by Aurora A in vitro. METHODOLOGY/PRINCIPAL FINDINGS: We investigate here the effect of these phosphorylations on kinesin-5 from Xenopus laevis, called Eg5. We find that phosphorylation at threonine 937 in the C-terminal tail of Eg5 by Cdk1 does not affect the velocity of Eg5, but strongly increases its binding to microtubules assembled in buffer. Likewise, this phosphorylation promotes binding of Eg5 to microtubules in Xenopus egg extract spindles. This enhancement of binding elevates the amount of Eg5 in spindles above a critical level required for bipolar spindle formation. We find furthermore that phosphorylation of Xenopus laevis Eg5 by Aurora A at serine 543 in the stalk is not required for spindle formation. CONCLUSIONS/SIGNIFICANCE: These results show that phosphorylation of Eg5 by Cdk1 has a direct effect on the interaction of this motor with microtubules. In egg extract, phosphorylation of Eg5 by Cdk1 ensures that the amount of Eg5 in the spindle is above a level that is required for spindle formation. This enhanced targeting to the spindle appears therefore to be, at least in part, a direct consequence of the enhanced binding of Eg5 to microtubules upon phosphorylation by Cdk1. These findings advance our understanding of the regulation of this essential mitotic motor protein. Public Library of Science 2008-12-15 /pmc/articles/PMC2592692/ /pubmed/19079595 http://dx.doi.org/10.1371/journal.pone.0003936 Text en Cahu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Cahu, Julie
Olichon, Aurelien
Hentrich, Christian
Schek, Henry
Drinjakovic, Jovana
Zhang, Cunjie
Doherty-Kirby, Amanda
Lajoie, Gilles
Surrey, Thomas
Phosphorylation by Cdk1 Increases the Binding of Eg5 to Microtubules In Vitro and in Xenopus Egg Extract Spindles
title Phosphorylation by Cdk1 Increases the Binding of Eg5 to Microtubules In Vitro and in Xenopus Egg Extract Spindles
title_full Phosphorylation by Cdk1 Increases the Binding of Eg5 to Microtubules In Vitro and in Xenopus Egg Extract Spindles
title_fullStr Phosphorylation by Cdk1 Increases the Binding of Eg5 to Microtubules In Vitro and in Xenopus Egg Extract Spindles
title_full_unstemmed Phosphorylation by Cdk1 Increases the Binding of Eg5 to Microtubules In Vitro and in Xenopus Egg Extract Spindles
title_short Phosphorylation by Cdk1 Increases the Binding of Eg5 to Microtubules In Vitro and in Xenopus Egg Extract Spindles
title_sort phosphorylation by cdk1 increases the binding of eg5 to microtubules in vitro and in xenopus egg extract spindles
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2592692/
https://www.ncbi.nlm.nih.gov/pubmed/19079595
http://dx.doi.org/10.1371/journal.pone.0003936
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