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Ca2+ modulation of cis-unsaturated fatty acid-induced mutant protein kinase C activity: indication of inhibitory Ca2+-binding site in protein kinase C-alpha

机译:Ca2 +调节的顺式不饱和脂肪酸诱导的突变蛋白激酶C活性:指示蛋白激酶C-alpha中抑制性Ca2 +结合位点

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摘要

The C2 domain in protein kinase C (PKC) is homologous to equivalent domains in a number of important cytoplasmic proteins. Except for its implied function in Ca2+ and phospholipid binding, the precise role of this domain is not well understood. We examined the role of the C2 domain of PKC-alpha using a mutant enzyme in which 80% of this domain has been deleted. This mutant can be activated by phospholipid and diacylglycerol, but is independent of Ca2+. In this regard, its characteristics are similar to those of the novel PKCs (nPKCs), consistent with the notion that the C2 domain of PKC confers its Ca2+ responsiveness. However, when the C2 deletion mutant is activated by cis-unsaturated fatty acid, the activity is strongly inhibited by Ca2+ at micromolar concentrations, The Ca2+ inhibition is dose-dependent and is specific to cis-unsaturated fatty acids. The deletion mutant can also be activated synergistically by diacylglycerol and cis-fatty acid, but again activation is inhibited by Ca2+, Our results indicate that a PKC lacking the C2 domain is Ca2+-responsive and there exists an additional site for Ca2+ that modulates the sensitivity of the enzyme to cis-unsaturated fatty acid but not to diacylglycerol. This modulatory Ca2+-binding site appears to be suppressed by the C2 domain because the presence of the domain reverses the direction of PKC activity induced by cis-unsaturated fatty acid. These results suggest that the modulatory Ca2+-binding site could act as a molecular switch selective for fatty acid activation by sensing the changes in the Ca2+ levels in a cell, serving a possible mechanism of differential activation of cPKC with a C2 domain and nPKC lacking this domain. [References: 33]
机译:蛋白激酶C(PKC)中的C2结构域与许多重要细胞质蛋白中的等效结构域同源。除了其在Ca2 +和磷脂结合中的隐含功能外,对该结构域的确切作用还没有很好的了解。我们使用其中80%的该域已被删除的突变酶检查了PKC-α的C2域的作用。该突变体可以被磷脂和二酰基甘油激活,但不依赖于Ca2 +。在这方面,其特征与新型PKC(nPKC)的特征相似,这与PKC的C2域赋予其Ca2 +响应能力的观点一致。但是,当C2缺失突变体被顺式不饱和脂肪酸激活时,其活性在微摩尔浓度下会被Ca2 +强烈抑制。Ca2+抑制作用是剂量依赖性的,并且对顺式不饱和脂肪酸具有特异性。缺失突变体也可以被二酰基甘油和顺式脂肪酸协同激活,但再次被Ca2 +抑制。我们的结果表明,缺乏C2域的PKC具有Ca2 +响应性,并且Ca2 +存在一个额外的位点,可调节敏感性酶可以生成顺式不饱和脂肪酸,而不能生成二酰基甘油。该调节性Ca2 +结合位点似乎被C2域抑制,因为该域的存在会逆转由顺式不饱和脂肪酸诱导的PKC活性的方向。这些结果表明,调节性Ca2 +结合位点可以通过感知细胞中Ca2 +水平的变化而充当选择性激活脂肪酸的分子开关,为cPKC与C2结构域和nPKC缺乏这种差异激活提供了可能的机制。域。 [参考:33]

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