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Research Article

Schizosaccharomyces pombe skp1+ Encodes a Protein Kinase Related to Mammalian Glycogen Synthase Kinase 3 and Complements a cdc14 Cytokinesis Mutant

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Pages 179-191 | Received 28 Sep 1995, Accepted 09 Oct 1995, Published online: 29 Mar 2023
 

Abstract

We report the cloning of the skp1+ gene, a Schizosaccharomyces pombe homolog of the glycogen synthase kinase 3 (GSK-3) family whose members in higher eukaryotes are involved in cell fate determination, nuclear signalling, and hormonal regulation. skp1 is 67% identical to mammalian GSK-3β and displays similar biochemical properties in vitro. Like GSK-3β, skp1 is phosphorylated on a conserved tyrosine residue, and this phosphorylation is required for efficient activity. skp1 is also phosphorylated at a serine which has been identified as S-335. Phosphorylation at this site is likely to inhibit its function. Unlike the mammalian enzyme, skp1 both tyrosine autophosphorylates in yeast cells and can phosphorylate other proteins on tyrosine in bacteria. The skp1+ gene is not essential. However, cells with deletions in skp1+ are sensitive to heat shock and exhibit defects in sporulation. Overexpression of wild-type skp1+ specifically complements cdc14-118, one of several mutations causing a defect in cytokinesis. In addition, certain phosphorylation site mutants induce a delay or block in cytokinesis when overexpressed. Together, these data identify novel interactions of a fission yeast GSK-3 homolog with elements of the cytokinesis machinery.

View correction statement:
Schizosaccharomyces pombe skp1+ Encodes a Protein Kinase Related to Mammalian Glycogen Synthase Kinase 3 and Complements a cdc14 Cytokinesis Mutant
Conserved Intron Elements Repress Splicing of a Neuron-Specific c-src Exon In Vitro

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