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Active site-directed inhibition of Ca2+/calmodulin-dependent protein kinase type II by a bifunctional calmodulin-binding peptide.

机译:双功能钙调蛋白结合肽对Ca2 + /钙调蛋白依赖性蛋白激酶II型的活性定点抑制。

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摘要

The activation of Ca2+/calmodulin (CaM)-dependent protein kinase II (CaM-KII) by Ca2+/CaM results in autophosphorylation and the generation of Ca2+/CaM-independent enzyme activity. We postulated that CaM binding and subsequent autophosphorylation alters the conformation of CaM-KII and exposes its substrate-binding and catalytic site(s). Previous peptide mapping studies on CaM-KII demonstrated the close proximity of CaM-binding and autophosphorylation domains. Analyses of the deduced amino acid sequences encoding CaM-KII have allowed the identification of its CaM-binding domain and have revealed two consensus phosphorylation sites that flank this regulatory domain. We report herein the distinct properties of two synthetic peptides modeled after the CaM-binding domain of CaM-KII. The first peptide binds CaM in a Ca2+-dependent manner and is an antagonist of CaM-KII activation (IC50 approximately equal to 75 nM). It does not, however, inhibit CaM-KII activity. A second peptide containing the same CaM-binding domain plus a putative autophosphorylation sequence at its N terminus displayed bifunctional regulatory properties. In addition to being a CaM antagonist, the latter was a potent inhibitor of Ca2+/CaM-independent kinase activity (IC50 approximately equal to 2 microM). We suggest that this bifunctional peptide represents an active site-directed inhibitory element of CaM-KII. The separation of CaM antagonist and active site-directed inhibitory properties of this peptide distinguishes CaM-KII from other CaM-dependent enzymes in which bifunctional regulatory properties appear to reside in the same peptide domain. These results indicate that the definition of site-directed inhibitory peptides should, in some cases, be expanded to include bona fide phosphorylation sites.
机译:Ca2 + / CaM对Ca2 + /钙调蛋白(CaM)依赖性蛋白激酶II(CaM-KII)的激活导致自磷酸化和Ca2 + / CaM非依赖性酶活性的产生。我们推测,CaM结合和随后的自磷酸化会改变CaM-KII的构象,并暴露其底物结合和催化位点。以前在CaM-KII上进行的肽图分析研究表明,CaM结合和自磷酸化域非常接近。对推导的编码CaM-KII的氨基酸序列的分析已允许鉴定其CaM-结合域,并揭示了位于该调控域侧翼的两个共有的磷酸化位点。我们在此报告了在CaM-KII的CaM结合域之后建模的两个合成肽的独特特性。第一个肽以Ca2 +依赖性方式结合CaM,并且是CaM-KII激活的拮抗剂(IC50大约等于75 nM)。但是,它不抑制CaM-KII活性。含有相同CaM结合结构域和在其N端假定的自磷酸化序列的第二个肽显示出双功能调节特性。除了是CaM拮抗剂外,后者还是Ca2 + / CaM非依赖性激酶活性(IC50大约等于2 microM)的有效抑制剂。我们建议该双功能肽代表CaM KII的活性定点抑制元素。 CaM拮抗剂的分离和该肽的活性定点抑制特性将CaM-KII与其他CaM依赖性酶区分开,在后者中,双功能调节特性似乎位于同一肽域中。这些结果表明,在某些情况下,定点抑制肽的定义应扩大到包括真正的磷酸化位点。

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