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首页> 外文期刊>Archives of Biochemistry and Biophysics >A peptide substrate-based affinity label blocks protein kinase C-catalyzed ATP hydrolysis and peptide-substrate phosphorylation.
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A peptide substrate-based affinity label blocks protein kinase C-catalyzed ATP hydrolysis and peptide-substrate phosphorylation.

机译:基于肽底物的亲和标记物可阻断蛋白激酶C催化的ATP水解和肽底物的磷酸化。

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Studies focused on the cAMP-dependent protein kinase (PKA) have led to the identification of conserved active-site residues involved in Ser/Thr protein kinase catalysis and have ruled out a role for Cys residues in the catalytic mechanism. Protein kinase C (PKC) is a Ser/Thr protein kinase isozyme family. We recently reported that the peptide-substrate analog N-biotinyl-Arg-Arg-Arg-Cys-Leu-Arg-Arg-Leu (N-biotinyl-RRRCLRRL) spontaneously forms intermolecular disulfide bridges with the active-site region of PKC isozymes concomitant with inactivation of histone kinase catalysis. Because Cys does not participate in PKC catalysis, one can analyze the active-site topology of PKC by examining which catalytic reactions are sterically hindered when the inactivator peptide is tethered to Cys in the active-site region of the enzyme. In this report, we show that N-biotinyl-RRRCLRRL inactivates the bulky PKC-catalyzed histone phosphorylation reaction, the comparatively less bulky PKC-catalyzed phosphorylation of a series of octapeptide, hexapeptide, and pentapeptide substrates, the intramolecular autophosphorylation reaction of PKC, and the least bulky PKC-catalyzed reaction, ATP hydrolysis, in a dithiothreitol-sensitive manner with comparable efficacy. Our results provide evidence that the covalent linkage of N-biotinyl-RRRCLRRL to the active-site region of PKC sterically hinders PKC catalysis, even in the absence of peptide and protein substrates. Copyright 1999 Academic Press.
机译:专注于cAMP依赖性蛋白激酶(PKA)的研究已导致鉴定涉及Ser / Thr蛋白激酶催化的保守活性位点残基,并排除了Cys残基在催化机制中的作用。蛋白激酶C(PKC)是Ser / Thr蛋白激酶同工酶家族。我们最近报道,肽底物类似物N-生物素基-Arg-Arg-Arg-Cys-Leu-Arg-Arg-Leu(N-生物素-RRRCLRRL)自发形成分子间二硫键与PKC同工酶的活性位点区域同时出现与组蛋白激酶催化失活有关。由于Cys不参与PKC催化作用,因此可以通过研究将灭活剂肽束缚在酶的活性位点区域上的Cys时哪些催化反应在空间上受到阻碍来分析PKC的活性位点拓扑。在本报告中,我们表明N-生物素-RRRCLRRL可以使庞大的PKC催化的组蛋白磷酸化反应失活,一系列八肽,六肽和五肽底物的PKC催化的磷酸化程度相对较低,PKC的分子内自磷酸化反应以对二硫苏糖醇敏感的方式在PKC催化的反应中体积最小的ATP水解,具有可比的功效。我们的结果提供了证据,表明即使在没有肽和蛋白质底物的情况下,N-生物素-RRRCLRRL与PKC的活性位点区域的共价连接也会在空间上阻碍PKC催化。版权所有1999,学术出版社。

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