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Activation of atypical protein kinase C by sphingosine 1-phosphate revealed by an aPKC-specific activity reporter

机译:通过APK特异性活动报告者揭示的鞘氨氨酸1-磷酸磷酸蛋白激酶C的激活

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Atypical protein kinase C (aPKC) isozymes are unique in the PKC superfamily in that they are not regulated by the lipid second messenger diacylglycerol, which has led to speculation about whether a different second messenger acutely controls their function. Here, using a genetically encoded reporter that we designed, aPKC-specific C kinase activity reporter (aCKAR), we found that the lipid mediator sphingosine 1-phosphate (S1P) promoted the cellular activity of aPKC. Intracellular S1P directly bound to the purified kinase domain of aPKC and relieved autoinhibitory constraints, thereby activating the kinase. In silico studies identified potential binding sites on the kinase domain, one of which was validated biochemically. In HeLa cells, S1P-dependent activation of aPKC suppressed apoptosis. Together, our findings identify a previously undescribed molecular mechanism of aPKC regulation, a molecular target for S1P in cell survival regulation, and a tool to further explore the biochemical and biological functions of aPKC.
机译:非典型蛋白激酶C(APKC)同工酶在PKC超家族中是独一无二的,因为它们不受脂质第二信使二甘油调节,这导致了关于不同的第二信使是否急性控制其功能的猜测。这里,使用我们设计的基因编码的记者,我们设计了APKC- C激酶活性报告者(Ackar),我们发现脂质介导鞘氨醇1-磷酸(S1P)促进APKC的细胞活性。细胞内S1P直接与APKC的纯化激酶结构域结合并缓解了自身抑制的约束,从而激活激酶。在硅研究中,鉴定了激酶结构域上的潜在结合位点,其中一个是生物化学验证的。在Hela细胞中,S1P依赖性APK的激活抑制了凋亡。我们的研究结果一起鉴定了APKC调节的先前未描述的分子机制,S1P在细胞存活调节中的分子靶标,以及一种进一步探索APKC生物化学和生物功能的工具。

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