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Licensing of yeast centrosome duplication requires phosphoregulation of sfi1.


ABSTRACT: Duplication of centrosomes once per cell cycle is essential for bipolar spindle formation and genome maintenance and is controlled in part by cyclin-dependent kinases (Cdks). Our study identifies Sfi1, a conserved component of centrosomes, as the first Cdk substrate required to restrict centrosome duplication to once per cell cycle. We found that reducing Cdk1 phosphorylation by changing Sfi1 phosphorylation sites to nonphosphorylatable residues leads to defects in separation of duplicated spindle pole bodies (SPBs, yeast centrosomes) and to inappropriate SPB reduplication during mitosis. These cells also display defects in bipolar spindle assembly, chromosome segregation, and growth. Our findings lead to a model whereby phosphoregulation of Sfi1 by Cdk1 has the dual function of promoting SPB separation for spindle formation and preventing premature SPB duplication. In addition, we provide evidence that the protein phosphatase Cdc14 has the converse role of activating licensing, likely via dephosphorylation of Sfi1.

SUBMITTER: Avena JS 

PROVIDER: S-EPMC4207612 | biostudies-literature | 2014 Oct

REPOSITORIES: biostudies-literature

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Licensing of yeast centrosome duplication requires phosphoregulation of sfi1.

Avena Jennifer S JS   Burns Shannon S   Yu Zulin Z   Ebmeier Christopher C CC   Old William M WM   Jaspersen Sue L SL   Winey Mark M  

PLoS genetics 20141023 10


Duplication of centrosomes once per cell cycle is essential for bipolar spindle formation and genome maintenance and is controlled in part by cyclin-dependent kinases (Cdks). Our study identifies Sfi1, a conserved component of centrosomes, as the first Cdk substrate required to restrict centrosome duplication to once per cell cycle. We found that reducing Cdk1 phosphorylation by changing Sfi1 phosphorylation sites to nonphosphorylatable residues leads to defects in separation of duplicated spind  ...[more]

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