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蛋白激酶 Cθ 的别构调节:通过 AGC 激酶中的配体理解多步骤磷酸化和引发作用。

Allosteric regulation of PKCθ: understanding multistep phosphorylation and priming by ligands in AGC kinases.

机构信息

Departament de Fisicoquímica, Facultat de Farmàcia, Universitat de Barcelona, Barcelona, Spain.

出版信息

Proteins. 2012 Jan;80(1):269-80. doi: 10.1002/prot.23205. Epub 2011 Nov 9.

Abstract

Protein kinases play critical roles in cellular activation and differentiation, and are involved in numerous pathophysiological processes. As a critical component of the regulatory circuitry of the cell, the kinase domain has the ability to integrate multiple signals, yielding a predetermined output. In PKC and other protein kinases of the AGC family, several phosphorylation sites control the activity, but these are in turn influenced by the presence of ligands in the binding pocket, which promotes phosphorylation. Here, we take PKC-theta as a prototypical member of the family and use molecular dynamics simulations to investigate the cross-talk that exists between regulatory and functional sites. We first show how the apo-unphosphorylated form of the kinase is populating a conformational space in which access to the ATP binding site and to the activation loop (AL) are simultaneously hindered. This could explain why the inactive state is not only catalytically incompetent but also resistant to activation. AL phosphorylation induces ATP binding site opening, which can then readily accept the cofactor. But the signal transmission mechanism works both ways, and if ligand binding to the unphosphorylated form occurs first, the AL is de-protected and becomes exposed to phosphorylation, thus providing an explanation for the paradoxical activation of PKCs by their inhibitors.

摘要

蛋白激酶在细胞激活和分化中起着关键作用,并且参与了许多病理生理过程。作为细胞调节回路的关键组成部分,激酶结构域具有整合多个信号的能力,从而产生预定的输出。在 PKC 和 AGC 家族的其他蛋白激酶中,有几个磷酸化位点控制着酶的活性,但这些磷酸化位点又受到结合口袋中配体存在的影响,从而促进了磷酸化。在这里,我们以 PKC-θ为例,研究了调节和功能位点之间存在的串扰。我们首先展示了无磷酸化形式的激酶如何在构象空间中进行填充,在这种构象空间中,ATP 结合位点和激活环(AL)的进入同时受到阻碍。这可以解释为什么无活性状态不仅在催化上无能力,而且还能抵抗激活。AL 磷酸化诱导 ATP 结合位点的打开,然后可以很容易地接受辅助因子。但是信号传递机制是双向的,如果配体先与非磷酸化形式结合,那么 AL 就会失去保护,暴露于磷酸化作用之下,从而为 PKC 抑制剂的悖论性激活提供了一种解释。

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