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蛋白激酶C-δ活性不依赖于激活环磷酸化:细胞中的结构基础及功能改变

Independence of protein kinase C-delta activity from activation loop phosphorylation: structural basis and altered functions in cells.

作者信息

Liu Yin, Belkina Natalya V, Graham Caroline, Shaw Stephen

机构信息

Experimental Immunology Branch, NCI, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Biol Chem. 2006 Apr 28;281(17):12102-11. doi: 10.1074/jbc.M600508200. Epub 2006 Feb 27.

Abstract

Activation loop phosphorylation plays critical regulatory roles for many kinases. Unlike other protein kinase Cs (PKC), PKC-delta does not require phosphorylation of its activation loop (Thr-507) for in vitro activity. We investigated the structural basis for this unusual capacity and its relevance to PKC-delta function in intact cells. Mutational analysis demonstrated that activity without Thr-507 phosphorylation depends on 20 residues N-terminal to the kinase domain and a pair of phenylalanines (Phe-500/Phe-527) unique to PKC-delta in/near the activation loop. Molecular modeling demonstrated that these elements stabilize the activation loop by forming a hydrophobic chain of interactions from the C-lobe to activation loop to N-terminal (helical) extension. In cells PKC-delta mediates both apoptosis and transcription regulation. We found that the T507A mutant of the PKC-delta kinase domain resembled the corresponding wild type in mediating apoptosis in transfected HEK293T cells. But the T507A mutant was completely defective in AP-1 and NF-kappaB reporter assays. A novel assay in which the kinase domain of PKC-delta and its substrate (a fusion protein of PKC substrate peptide with green fluorescent protein) were co-targeted to lipid rafts revealed a major substrate-selective defect of the T507A mutant in phosphorylating the substrate in cells. In vitro analysis showed strong product inhibition on the T507A mutant with particular substrates whose characteristics suggest it contributes to the substrate selective defect of the PKC-delta T507A mutant in cells. Thus, activation loop phosphorylation of PKC-delta may regulate its function in cells in a novel way.

摘要

激活环磷酸化对许多激酶起着关键的调节作用。与其他蛋白激酶C(PKC)不同,PKC-δ的体外活性不需要其激活环(苏氨酸-507)的磷酸化。我们研究了这种异常能力的结构基础及其与完整细胞中PKC-δ功能的相关性。突变分析表明,苏氨酸-507未磷酸化时的活性取决于激酶结构域N端的20个残基以及激活环内/附近PKC-δ特有的一对苯丙氨酸(苯丙氨酸-500/苯丙氨酸-527)。分子建模表明,这些元件通过形成从C叶到激活环再到N端(螺旋)延伸的疏水相互作用链来稳定激活环。在细胞中,PKC-δ介导细胞凋亡和转录调控。我们发现,PKC-δ激酶结构域的T507A突变体在介导转染的HEK293T细胞凋亡方面与相应的野生型相似。但T507A突变体在AP-1和NF-κB报告基因检测中完全缺陷。一种新的检测方法,其中PKC-δ的激酶结构域及其底物(PKC底物肽与绿色荧光蛋白的融合蛋白)共靶向脂筏,揭示了T507A突变体在细胞中磷酸化底物时存在主要的底物选择性缺陷。体外分析表明,T507A突变体对特定底物有强烈的产物抑制作用,这些底物的特性表明它导致了PKC-δ T507A突变体在细胞中的底物选择性缺陷。因此,PKC-δ的激活环磷酸化可能以一种新的方式调节其在细胞中的功能。

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