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Quantitative Phosphoproteomics Reveals Pathways for Coordination of Cell Growth and Division by the Conserved Fission Yeast Kinase Pom1

机译:定量磷酸化蛋白质组学揭示了守恒裂变酵母激酶Pom1协调细胞生长和分裂的途径。

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摘要

Complex phosphorylation-dependent signaling networks underlie the coordination of cellular growth and division. In the fission yeast Schizosaccharomyces pombe, the Dual specificity tyrosine-(Y)-phosphorylation regulated kinase (DYRK) family protein kinase Pom1 regulates cell cycle progression through the mitotic inducer Cdr2 and controls cell polarity through unknown targets. Here, we sought to determine the phosphorylation targets of Pom1 kinase activity by SILAC-based phosphoproteomics. We defined a set of high-confidence Pom1 targets that were enriched for cytoskeletal and cell growth functions. Cdr2 was the only cell cycle target of Pom1 kinase activity that we identified in cells. Mutation of Pom1-dependent phosphorylation sites in the C terminus of Cdr2 inhibited mitotic entry but did not impair Cdr2 localization. In addition, we found that Pom1 phosphorylated multiple substrates that function in polarized cell growth, including Tea4, Mod5, Pal1, the Rho GAP Rga7, and the Arf GEF Syt22. Purified Pom1 phosphorylated these cell polarity targets in vitro, confirming that they are direct substrates of Pom1 kinase activity and likely contribute to regulation of polarized growth by Pom1. Our study demonstrates that Pom1 acts in a linear pathway to control cell cycle progression while regulating a complex network of cell growth targets.
机译:复杂的依赖磷酸化的信号网络是细胞生长和分裂协调的基础。在裂殖酵母裂殖酵母中,酪氨酸-(Y)-磷酸化调节激酶(DYRK)家族蛋白激酶Pom1的双重特异性通过有丝分裂诱导物Cdr2调节细胞周期进程,并通过未知靶标控制细胞极性。在这里,我们试图通过基于SILAC的磷酸化蛋白质组学确定Pom1激酶活性的磷酸化目标。我们定义了一组高可信度的Pom1目标,这些目标丰富了细胞骨架和细胞生长功能。 Cdr2是我们在细胞中鉴定的Pom1激酶活性的唯一细胞周期靶标。 Cdr2的C末端Pom1依赖的磷酸化位点的突变抑制有丝分裂进入,但不损害Cdr2的定位。此外,我们发现Pom1磷酸化了在极化细胞生长中起作用的多种底物,包括Tea4,Mod5,Pal1,Rho GAP Rga7和Arf GEF Syt22。纯化的Pom1在体外使这些细胞极性靶磷酸化,证实它们是Pom1激酶活性的直接底物,并可能通过Pom1调节极化生长。我们的研究表明,Pom1在控制细胞周期进程的线性途径中起作用,同时调节细胞生长靶标的复杂网络。

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