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Epac激活过程中的结构动力学

Structural dynamics in the activation of Epac.

作者信息

Harper Shannon M, Wienk Hans, Wechselberger Rainer W, Bos Johannes L, Boelens Rolf, Rehmann Holger

机构信息

Department of Physiological Chemistry and Centre for Biomedical Genetics, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

J Biol Chem. 2008 Mar 7;283(10):6501-8. doi: 10.1074/jbc.M707849200. Epub 2007 Dec 31.

Abstract

Epac1 is a cAMP-responsive exchange factor for the small G-protein Rap. It consists of a regulatory region containing a cyclic nucleotide binding (CNB) domain and a catalytic region that activates Rap. In the absence of cAMP, access of Rap to the catalytic site is blocked by the regulatory region. We analyzed the conformational states of the CNB domain in the absence and in the presence of cAMP and cAMP analogues by NMR spectroscopy, resulting in the first direct insights into the activation mechanism of Epac. We prove that the CNB domain exists in equilibrium between the inactive and the active conformation, which is shifted by binding of cAMP. cAMP binding results in conformational changes in both the ligand binding pocket and the outer helical segments. We used two different cAMP antagonists that block these successive changes to elucidate the steps of this process. Highlighting the role of dynamics, the superactivator 8-pCPT-2'-O-Me-cAMP induces similar conformational changes as cAMP but causes different internal mobility. The results reveal the critical elements of the CNB domain of Epac required for activation and highlight the role of dynamics in this process.

摘要

Epac1是小G蛋白Rap的一种cAMP反应性交换因子。它由一个包含环核苷酸结合(CNB)结构域的调节区域和一个激活Rap的催化区域组成。在没有cAMP的情况下,Rap进入催化位点的通道被调节区域阻断。我们通过核磁共振光谱分析了在没有和存在cAMP及cAMP类似物的情况下CNB结构域的构象状态,从而首次直接深入了解了Epac的激活机制。我们证明CNB结构域在无活性和活性构象之间存在平衡,这种平衡会因cAMP的结合而发生移动。cAMP结合会导致配体结合口袋和外部螺旋片段的构象变化。我们使用了两种不同的cAMP拮抗剂来阻断这些连续变化,以阐明这一过程的步骤。超级激活剂8-pCPT-2'-O-Me-cAMP突出了动力学的作用,它诱导的构象变化与cAMP相似,但导致不同的内部流动性。结果揭示了Epac的CNB结构域激活所需的关键元件,并突出了动力学在这一过程中的作用。

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