首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Cross-talk Phosphorylations by Protein Kinase C and Pho85p-Pho80p Protein Kinase Regulate Pah1p Phosphatidate Phosphatase Abundance in Saccharomyces cerevisiae
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Cross-talk Phosphorylations by Protein Kinase C and Pho85p-Pho80p Protein Kinase Regulate Pah1p Phosphatidate Phosphatase Abundance in Saccharomyces cerevisiae

机译:蛋白激酶C和Pho85p-Pho80p蛋白激酶的串扰磷酸化调节啤酒酵母中Pah1p磷酸酯磷酸酶的丰度。

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摘要

Yeast Pah1p is the phosphatidate phosphatase that catalyzes the penultimate step in triacylglycerol synthesis and plays a role in the transcriptional regulation of phospholipid synthesis genes. The enzyme is multiply phosphorylated, some of which is mediated by Pho85p-Pho80p, Cdc28p-cyclin B, and protein kinase A. Here, we showed that Pah1p is a bona fide substrate of protein kinase C; the phosphorylation reaction was time- and dose-dependent and dependent on the concentrations of ATP (Km = 4.5 μm) and Pah1p (Km = 0.75 μm). The stoichiometry of the reaction was 0.8 mol of phosphate/mol of Pah1p. By combining mass spectrometry, truncation analysis, site-directed mutagenesis, and phosphopeptide mapping, we identified Ser-677, Ser-769, Ser-773, and Ser-788 as major sites of phosphorylation. Analysis of Pah1p phosphorylations by different protein kinases showed that prephosphorylation with protein kinase C reduces its subsequent phosphorylation with protein kinase A and vice versa. Prephosphorylation with Pho85p-Pho80p had an inhibitory effect on its subsequent phosphorylation with protein kinase C; however, prephosphorylation with protein kinase C had no effect on the subsequent phosphorylation with Pho85p-Pho80p. Unlike its phosphorylations by Pho85p-Pho80p and protein kinase A, which cause a significant reduction in phosphatidate phosphatase activity, the phosphorylation of Pah1p by protein kinase C had a small stimulatory effect on the enzyme activity. Analysis of phosphorylation-deficient forms of Pah1p indicated that protein kinase C does not have a major effect on its location or its function in triacylglycerol synthesis, but instead, the phosphorylation favors loss of Pah1p abundance when it is not phosphorylated with Pho85p-Pho80p.
机译:酵母Pah1p是磷脂酰磷酸酶,可催化三酰甘油合成中的倒数第二个步骤,并在磷脂合成基因的转录调控中发挥作用。该酶被多重磷酸化,其中一些是由Pho85p-Pho80p,Cdc28p-cyclin B和蛋白激酶A介导的。在这里,我们证明了Pah1p是蛋白激酶C的真正底物。磷酸化反应是时间和剂量依赖性的,并且取决于ATP(Km = 4.5μm)和Pah1p(Km = 0.75μm)的浓度。反应的化学计量为0.8摩尔磷酸盐/摩尔Pah1p。通过结合质谱,截断分析,定向诱变和磷酸肽图谱,我们确定了Ser-677,Ser-769,Ser-773和Ser-788是磷酸化的主要位点。通过不同蛋白激酶对Pah1p磷酸化的分析表明,蛋白激酶C的预磷酸化可降低其随后蛋白激酶A的磷酸化,反之亦然。 Pho85p-Pho80p的预磷酸化对其随后被蛋白激酶C的磷酸化具有抑制作用。但是,蛋白激酶C的预磷酸化对随后的Pho85p-Pho80p的磷酸化没有影响。与Pho85p-Pho80p和蛋白激酶A的磷酸化会导致磷脂酰磷酸酶活性显着降低不同,蛋白激酶C对Pah1p的磷酸化对酶活性的刺激作用很小。对磷酸化不足形式的Pah1p的分析表明,蛋白激酶C对其三酰基甘油合成的位置或功能没有重大影响,但是,当磷酸化未被Pho85p-Pho80p磷酸化时,磷酸化有利于Pah1p丰度的损失。

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