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首页> 外文期刊>Eukaryotic cell >Cyclic AMP-Independent Regulation of Protein Kinase A Substrate Phosphorylation by Kelch Repeat Proteins
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Cyclic AMP-Independent Regulation of Protein Kinase A Substrate Phosphorylation by Kelch Repeat Proteins

机译:循环AMP的蛋白激酶A底物磷酸化的凯尔奇重复蛋白的独立调控。

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Pseudohyphal and invasive growth in the yeast Saccharomyces cerevisiae is regulated by the kelch repeat-containing proteins Gpb1p and Gpb2p, which act downstream of the G protein α-subunit Gpa2p. Here we show that deletion of GPB1 and GPB2 causes increased haploid invasive growth in cells containing any one of the three protein kinase A (PKA) catalytic subunits, suggesting that Gpb1p and Gpb2p are able to inhibit each of these kinases. Cells containing gpb1Δ gpb2Δ mutations also display increased phosphorylation of the PKA substrates Sfl1p and Msn2p, indicating that Gpb1p and Gpb2p are negative regulators of PKA substrate phosphorylation. Stimulation of PKA-dependent signaling by gpb1Δ gpb2Δ mutations occurs in cells that lack both adenylyl cyclase and the high-affinity cyclic AMP (cAMP) phosphodiesterase. This effect is also seen in cells that lack the low-affinity cAMP phosphodiesterase. Given that these three enzymes control the synthesis and degradation of cAMP, these results indicate that the effect of Gpb1p and Gpb2p on PKA substrate phosphorylation does not occur by regulating the intracellular cAMP concentration. These findings suggest that Gpb1p and Gpb2p mediate their effects on the cAMP/PKA signaling pathway either by inhibiting the activity of PKA in a cAMP-independent manner or by activating phosphatases that act on PKA substrates.
机译:酵母 Saccharomyces cerevisiae 中的假菌丝和侵袭性生长受含海带重复的蛋白Gpb1p和Gpb2p的调节,这些蛋白在G蛋白α-亚基Gpa2p的下游起作用。在这里,我们显示删除 GPB1 GPB2 会导致包含三个蛋白激酶A(PKA)催化亚基中任何一个的细胞中单倍体侵袭性生长的增加,这表明Gpb1p和Gpb2p能够抑制每种激酶。包含 gpb1 Δ gpb2 Δ突变的细胞也显示出PKA底物Sfl1p和Msn2p的磷酸化增加,表明Gpb1p和Gpb2p是PKA底物磷酸化的负调控因子。 gpb1 Δ gpb2 Δ突变刺激PKA依赖性信号的发生在缺乏腺苷酸环化酶和高亲和力环状AMP(cAMP)磷酸二酯酶的细胞中。在缺乏低亲和力的cAMP磷酸二酯酶的细胞中也可以看到这种效果。鉴于这三种酶控制cAMP的合成和降解,这些结果表明Gpb1p和Gpb2p对PKA底物磷酸化的影响不会通过调节细胞内cAMP浓度而发生。这些发现表明,Gpb1p和Gpb2p通过以cAMP独立的方式抑制PKA的活性或激活作用于PKA底物的磷酸酶介导其对cAMP / PKA信号通路的作用。

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