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金属离子对伪底物抑制剂与蛋白激酶A高亲和力结合的影响。

Effect of metal ions on high-affinity binding of pseudosubstrate inhibitors to PKA.

作者信息

Zimmermann Bastian, Schweinsberg Sonja, Drewianka Stephan, Herberg Friedrich W

机构信息

BIAFFIN GmbH & Co KG, University of Kassel, Heinrich-Plett-Str.40, 34132 Kassel, Germany.

出版信息

Biochem J. 2008 Jul 1;413(1):93-101. doi: 10.1042/BJ20071665.

Abstract

Conformational control of protein kinases is an important way of modulating catalytic activity. Crystal structures of the C (catalytic) subunit of PKA (protein kinase A) in complex with physiological inhibitors and/or nucleotides suggest a highly dynamic process switching between open and more closed conformations. To investigate the underlying molecular mechanisms, SPR (surface plasmon resonance) was used for detailed binding analyses of two physiological PKA inhibitors, PKI (heat-stable protein kinase inhibitor) and a truncated form of the R (regulatory) subunit (RIalpha 92-260), in the presence of various concentrations of metals and nucleotides. Interestingly, it could be demonstrated that high-affinity binding of each pseudosubstrate inhibitor was dependent only on the concentration of divalent metal ions. At low micromolar concentrations of Mg2+ with PKI, transient interaction kinetics with fast on- and off-rates were observed, whereas at high Mg2+ concentrations the off-rate was slowed down by a factor of 200. This effect could be attributed to the second, low-affinity metal-binding site in the C subunit. In contrast, when investigating the interaction of RIalpha 92-260 with the C subunit under the same conditions, it was shown that the association rate rather than the dissociation rate was influenced by the presence of high concentrations of Mg2+. A model is presented, where the high-affinity interaction of the C subunit with pseudosubstrate inhibitors (RIalpha and PKI) is dependent on the closed, catalytically inactive conformation induced by the binding of a nucleotide complex where both of the metal-binding sites are occupied.

摘要

蛋白激酶的构象控制是调节催化活性的重要方式。蛋白激酶A(PKA)催化(C)亚基与生理抑制剂和/或核苷酸复合物的晶体结构表明,在开放构象和更封闭构象之间切换的过程具有高度动态性。为了研究潜在的分子机制,在存在各种浓度的金属和核苷酸的情况下,使用表面等离子体共振(SPR)对两种生理性PKA抑制剂——热稳定蛋白激酶抑制剂(PKI)和调节(R)亚基的截短形式(RIα 92 - 260)进行详细的结合分析。有趣的是,可以证明每种假底物抑制剂的高亲和力结合仅取决于二价金属离子的浓度。在PKI存在下,当Mg2+浓度为低微摩尔浓度时,观察到具有快速结合和解离速率的瞬时相互作用动力学,而在高Mg2+浓度下,解离速率减慢了200倍。这种效应可归因于C亚基中的第二个低亲和力金属结合位点。相反,在相同条件下研究RIα 92 - 260与C亚基的相互作用时,发现高浓度Mg2+的存在影响的是结合速率而非解离速率。本文提出了一个模型,其中C亚基与假底物抑制剂(RIα和PKI)的高亲和力相互作用取决于由核苷酸复合物结合诱导的封闭的、催化无活性的构象,此时两个金属结合位点均被占据。

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