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Glc7/Protein Phosphatase 1 Regulatory Subunits Can Oppose the Ipl1/Aurora Protein Kinase by Redistributing Glc7

机译:Glc7 /蛋白磷酸酶1调节亚基可以通过重新分配Glc7来反对Ipl1 / Aurora蛋白激酶。

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摘要

Faithful chromosome segregation depends on the opposing activities of the budding yeast Glc7/PP1 protein phosphatase and Ipl1/Aurora protein kinase. We explored the relationship between Glc7 and Ipl1 and found that the phosphorylation of the Ipl1 substrate, Dam1, was altered by decreased Glc7 activity, whereas Ipl1 levels, localization, and kinase activity were not. These data strongly suggest that Glc7 ensures accurate chromosome segregation by dephosphorylating Ipl1 targets rather than regulating the Ipl1 kinase. To identify potential Glc7 and Ipl1 substrates, we isolated ipl1-321 dosage suppressors. Seven genes (SDS22, BUD14, GIP3, GIP4, SOL1, SOL2, and PEX31) encode newly identified ipl1 dosage suppressors, and all 10 suppressors encode proteins that physically interact with Glc7. The overexpression of the Gip3 and Gip4 suppressors altered Glc7 localization, indicating they are previously unidentified Glc7 regulatory subunits. In addition, the overexpression of Gip3 and Gip4 from the galactose promoter restored Dam1 phosphorylation in ipl1-321 mutant cells and caused wild-type cells to arrest in metaphase with unsegregated chromosomes, suggesting that Gip3 and Gip4 overexpression impairs Glc7's mitotic functions. We therefore propose that the overexpression of Glc7 regulatory subunits can titrate Glc7 away from relevant Ipl1 targets and thereby suppress ipl1-321 cells by restoring the balance of phosphatase/kinase activity.
机译:忠实的染色体分离取决于发芽的酵母Glc7 / PP1蛋白磷酸酶和Ipl1 / Aurora蛋白激酶的相反活性。我们探索了Glc7和Ipl1之间的关系,发现Ipl1底物Dam1的磷酸化被降低的Glc7活性所改变,而Ipl1的水平,定位和激酶活性却没有改变。这些数据强烈表明,Glc7可通过使Ipl1靶去磷酸化而不是调节Ipl1激酶来确保准确的染色体分离。为了鉴定潜在的Glc7和Ipl1底物,我们分离了ipl1-321剂量抑制剂。七个基因(SDS22,BUD14,GIP3,GIP4,SOL1,SOL2和PEX31)编码新鉴定的ipl1剂量抑制剂,所有10个抑制剂编码与Glc7物理相互作用的蛋白质。 Gip3和Gip4抑制剂的过度表达改变了Glc7的定位,表明它们以前是未鉴定的Glc7调节亚基。此外,半乳糖启动子中Gip3和Gip4的过表达恢复了ipl1-321突变细胞中Dam1的磷酸化,并导致野生型细胞停滞在未分离染色体的中期,这表明Gip3和Gip4的过表达损害了Glc7的有丝分裂功能。因此,我们建议,Glc7调节亚基的过表达可以使Glc7远离相关的Ipl1靶标,从而通过恢复磷酸酶/激酶活性的平衡来抑制ipl1-321细胞。

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