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磷酸化和核苷酸结合诱导 JNK1β1 的稳定性和氢交换模式发生变化,为其激活机制提供了深入了解。

Phosphorylation- and nucleotide-binding-induced changes to the stability and hydrogen exchange patterns of JNK1β1 provide insight into its mechanisms of activation.

机构信息

Protein Structure-Function Research Unit, School of Molecular and Cell Biology, University of the Witwatersrand, Johannesburg 2050, South Africa.

Biosciences, Council for Scientific and Industrial Research, Pretoria 0001, South Africa.

出版信息

J Mol Biol. 2014 Oct 23;426(21):3569-89. doi: 10.1016/j.jmb.2014.08.019. Epub 2014 Aug 29.

Abstract

Many studies have characterized how changes to the stability and internal motions of a protein during activation can contribute to their catalytic function, even when structural changes cannot be observed. Here, unfolding studies and hydrogen-deuterium exchange (HX) mass spectrometry were used to investigate the changes to the stability and conformation/conformational dynamics of JNK1β1 induced by phosphorylative activation. Equivalent studies were also employed to determine the effects of nucleotide binding on both inactive and active JNK1β1 using the ATP analogue, 5'-adenylyl-imidodiphosphate (AMP-PNP). JNK1β1 phosphorylation alters HX in regions involved in catalysis and substrate binding, changes that can be ascribed to functional modifications in either structure and/or backbone flexibility. Increased HX in the hinge between the N- and C-terminal domains implied that it acquires enhanced flexibility upon phosphorylation that may be a prerequisite for interdomain closure. In combination with the finding that nucleotide binding destabilizes the kinase, the patterns of solvent protection by AMP-PNP were consistent with a novel mode of nucleotide binding to the C-terminal domain of a destabilized and open domain conformation of inactive JNK1β1. Solvent protection by AMP-PNP of both N- and C-terminal domains in active JNK1β1 revealed that the domains close around nucleotide upon phosphorylation, concomitantly stabilizing the kinase. This suggests that phosphorylation activates JNK1β1 in part by increasing hinge flexibility to facilitate interdomain closure and the creation of a functional active site. By uncovering the complex interplay that occurs between nucleotide binding and phosphorylation, we present new insight into the unique mechanisms by which JNK1β1 is regulated.

摘要

许多研究已经描述了蛋白质在激活过程中稳定性和内部运动的变化如何有助于其催化功能,即使结构变化无法观察到。在这里,使用解折叠研究和氢氘交换 (HX) 质谱法研究了磷酸化激活诱导的 JNK1β1 稳定性和构象/构象动力学的变化。还使用核苷酸结合类似物 5'-腺嘌呤基-亚氨二磷酸(AMP-PNP)进行了等效研究,以确定核苷酸结合对无活性和活性 JNK1β1 的影响。JNK1β1 磷酸化改变了参与催化和底物结合的区域中的 HX,这些变化可以归因于结构和/或骨架灵活性的功能修饰。在 N-和 C-末端结构域之间的铰链中增加的 HX 表明,它在磷酸化后获得了增强的灵活性,这可能是域间闭合的先决条件。结合核苷酸结合使激酶不稳定的发现,AMP-PNP 的溶剂保护模式与一种新型核苷酸结合模式一致,该模式与失稳和开放结构域构象的 C-末端结构域的无活性 JNK1β1 结合。在磷酸化的活性 JNK1β1 中,AMP-PNP 对 N-和 C-末端结构域的溶剂保护表明,在磷酸化时,结构域围绕核苷酸关闭,同时稳定激酶。这表明磷酸化部分通过增加铰链灵活性来激活 JNK1β1,从而促进结构域闭合和功能性活性位点的形成。通过揭示核苷酸结合和磷酸化之间发生的复杂相互作用,我们对 JNK1β1 被调节的独特机制提供了新的见解。

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