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PMID: 15256500 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Cdk1-Clb4 controls the interaction of astral microtubule plus ends with subdomains of the daughter cell cortex.

Genes & development ·Vol. 18 ·No. 14 ·2004-07-15 ·Pages 1709-24

Maekawa H, Schiebel E

Abstract

As in many polarized cells, spindle alignment in yeast is essential and cell cycle regulated. A key step that governs spindle alignment is the selective binding of the Kar9 protein to only one of the two spindle pole bodies (SPBs). It has been suggested that cyclin-dependent kinase Cdc28, in complex with cyclin Clb4, associates only with the SPB in the mother cell and so prevents Kar9 binding to this SPB. However, here we show that the nonoverexpressed Clb4 associates with the budward-directed SPB through Kar9. Cdc28-Clb4 then uses Kar9 as a carrier to move from this SPB to the plus ends of astral microtubules, where Cdc28-Clb4 regulates the interactions between microtubule ends and subdomains of the bud cortex. In the absence of Cdc28-Clb4 activity (G1/S phase), astral microtubules interact with the bud tip in a manner dependent on actin, Myo2, and Kar9. Coincidentally with reaching the bud cortex in S phase, Cdc28-Clb4 facilitates the dissociation of the microtubule bud tip interaction and their capture by the bud neck. This transition prevents the preanaphase spindle from becoming prematurely pulled into the bud. Thus, Cdc28-Clb4 facilitates spindle alignment by regulating the interaction of astral microtubules with subdomains of the bud cortex.

MeSH Terms
Actins/metabolism CDC28 Protein Kinase, S cerevisiae/metabolism Cell Polarity/physiology Cyclins/metabolism Immunoblotting Microscopy, Fluorescence Microtubules/metabolism Myosin Heavy Chains/metabolism Myosin Type V/metabolism Nuclear Proteins/metabolism Plasmids/genetics Saccharomyces cerevisiae/cytology,metabolism Saccharomyces cerevisiae Proteins/metabolism Spindle Apparatus/metabolism
Chemicals
Actins Cyclins KAR9 protein, S cerevisiae MYO2 protein, S cerevisiae Nuclear Proteins Saccharomyces cerevisiae Proteins CDC28 Protein Kinase, S cerevisiae Myosin Type V Myosin Heavy Chains
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Maekawa Hiromi
The Paterson Institute for Cancer Research, Christie Hospital NHS Trust, Wilmslow Road, Manchester M20 4BX, UK.
Schiebel Elmar
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Article Info
Journal
Genes & development
Abbr.
Genes Dev
ISSN
0890-9369
Published
2004-07-15
Pages
1709-24
Language
English
Region
United States
NLM ID
8711660
PMCID
PMC478192
Subset
IM
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