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The Wee1 protein kinase regulates T14 phosphorylation of fission yeast Cdc2

G J Den Haese1, N Walworth, A M Carr

  • 1Department of Cell Biology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.

Insights

Phosphorylation at T14 in Cdc2 protein kinase, previously undetected, inhibits its activation. This finding reveals a new regulatory mechanism for cell cycle control in fission yeast.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Biochemistry

Background:

  • Cdc2 protein kinase regulates cell cycle transitions in Schizosaccharomyces pombe.
  • Cdc2 activation at G2-M involves dephosphorylation of tyrosine 15 (Y15).
  • Wee1 and Mik1 kinases oppose Cdc25 phosphatase in controlling Y15 phosphorylation.

Purpose of the Study:

  • To investigate a previously undetected phosphorylation site on S. pombe Cdc2.
  • To determine the role of T14 phosphorylation in Cdc2 regulation and cell cycle progression.
  • To elucidate the kinases responsible for T14 phosphorylation and its relationship with Y15 phosphorylation.

Main Methods:

  • Wee1 overexpression in Schizosaccharomyces pombe.
  • Generation and analysis of T14A and T14S mutant alleles of cdc2.
  • Assessment of T14 phosphorylation in cell cycle mutants and after DNA damage/replication stress.

Main Results:

  • Wee1 overexpression induced high stoichiometry phosphorylation at T14 in Cdc2.
  • T14 phosphorylation occurs at low stoichiometry during DNA replication or early G2.
  • T14 phosphorylation plays an inhibitory role in Cdc2 activation, dependent on Y15 phosphorylation.
  • Wee1 is required for T14 phosphorylation; Mik1 and Chk1 are not.
  • T14 phosphorylation is not essential for DNA damage or replication checkpoints.

Conclusions:

  • T14 phosphorylation is a novel regulatory mechanism for Cdc2 activation in fission yeast.
  • This inhibitory phosphorylation site is regulated by Wee1 and linked to Y15 phosphorylation.
  • The findings extend understanding of cell cycle control conserved across eukaryotes.

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