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细胞外信号调节激酶的变构激活:两个有序磷酸化事件的重要性

ERK Allosteric Activation: The Importance of Two Ordered Phosphorylation Events.

作者信息

Regev Clil, Jang Hyunbum, Nussinov Ruth

机构信息

Cancer Innovation Laboratory, National Cancer Institute at Frederick, Frederick, MD 21702, USA.

Cancer Innovation Laboratory, National Cancer Institute at Frederick, Frederick, MD 21702, USA; Computational Structural Biology Section, Frederick National Laboratory for Cancer Research, Frederick, MD 21702, USA.

出版信息

J Mol Biol. 2025 Apr 9:169130. doi: 10.1016/j.jmb.2025.169130.

Abstract

ERK, a coveted proliferation drug target, is a pivotal kinase in the Ras/ERK signaling cascade. Despite this, crucial questions about its activation have not been fully explored on the foundational, conformational level. Such questions include (i) Why ERK's activation demands dual phosphorylation; (ii) What is the role of each phosphorylation site in the activation loop; and (iii) Exactly how the (ordered) phosphorylation steps affect the conformational ensembles of the activation loop, their propensities and restriction to a narrower range favoring ERK's catalytic action. Here we used explicit molecular dynamics simulations to study ERK's stability and the conformational changes in different stages along the activation process. The initial monophosphorylation event elongates the activation loop to enable successive phosphorylations, which reintroduce stability/compactness through newly formed salt bridges. The interactions formed by monophosphorylation are site-dependent, with threonine's phosphorylation presenting stronger electrostatic interactions compared to tyrosine's. Dual phosphorylated ERKs revealed a compact kinase structure which allows the HRD catalytic motif to stabilize the ATP. We further observe that the hinge and the homodimerization binding site responded to a tri-state signaling code based solely on the phosphorylation degree (unphosphorylated, monophosphorylated, dual phosphorylated) of the activation loop, confirming that the activation loop can allosterically influence distant regions. Last, our findings indicate that threonine phosphorylation as the second step is necessary for ERK to become effectively activated and that activation depends on the phosphorylation order. Collectively, we offer ERK's dual allosteric phosphorylation code in activation and explain why the phosphorylation site order is crucial.

摘要

细胞外信号调节激酶(ERK)是一种备受关注的增殖药物靶点,是Ras/ERK信号级联反应中的关键激酶。尽管如此,关于其激活的关键问题在基础构象层面尚未得到充分探索。这些问题包括:(i)为什么ERK的激活需要双重磷酸化;(ii)每个磷酸化位点在激活环中的作用是什么;(iii)(有序的)磷酸化步骤究竟如何影响激活环的构象集合、它们的倾向以及对更有利于ERK催化作用的较窄范围的限制。在这里,我们使用显式分子动力学模拟来研究ERK的稳定性以及激活过程中不同阶段的构象变化。最初的单磷酸化事件会拉长激活环,以实现连续的磷酸化,而连续的磷酸化通过新形成的盐桥重新引入稳定性/紧凑性。单磷酸化形成的相互作用是位点依赖性的,与酪氨酸的磷酸化相比,苏氨酸的磷酸化呈现出更强的静电相互作用。双重磷酸化的ERK显示出紧凑的激酶结构,这使得HRD催化基序能够稳定ATP。我们进一步观察到,铰链区和同二聚化结合位点仅根据激活环的磷酸化程度(未磷酸化、单磷酸化、双重磷酸化)对三态信号代码做出反应,证实激活环可以变构影响远处区域。最后,我们的研究结果表明,苏氨酸磷酸化作为第二步对于ERK有效激活是必要的,并且激活取决于磷酸化顺序。总的来说,我们提供了ERK激活中的双重变构磷酸化代码,并解释了为什么磷酸化位点顺序至关重要。

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