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ALK 激活过程中关键结构特征构象转变及与 ATP 结合的神经母细胞瘤两种突变体:加速分子动力学模拟的研究进展

Conformational Transition of Key Structural Features Involved in Activation of ALK Induced by Two Neuroblastoma Mutations and ATP Binding: Insight from Accelerated Molecular Dynamics Simulations.

机构信息

Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, International Joint Research Laboratory of Nano-Micro Architecture Chemistry , Jilin University , Changchun 130023 , People's Republic of China.

Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, College of Life Science , Jilin University , Changchun 130012 , People's Republic of China.

出版信息

ACS Chem Neurosci. 2018 Jul 18;9(7):1783-1792. doi: 10.1021/acschemneuro.8b00105. Epub 2018 Apr 17.

Abstract

Deregulated kinase activity of anaplastic lymphoma kinase (ALK) has been observed to be implicated in the development of tumor progression. The activation mechanism of ALK is proposed to be similar to other receptor tyrosine kinases (RTKs), but the distinct static X-ray crystal conformation of ALK suggests its unique conformational transition. Herein, we have illustrated the dynamic conformational property of wild-type ALK as well as the kinase activation equilibrium variation induced by two neuroblastoma mutations (R1275Q and Y1278S) and ATP binding by performing enhanced sampling accelerated Molecular Dynamics (aMD) simulations. The results suggest that the wild-type ALK is mostly favored in the inactive state, whereas the mutations and ATP binding promote a clear shift toward the active-like conformation. The R1275Q mutant stabilizes the active conformation by rigidifying the αC-in conformation. The Y1278S mutant promotes activation at the expense of a π-stacking hydrophobic cluster, which plays a critical role in the stabilization of the inactive conformation of native ALK. ATP produces a more compact active site and thereby facilitates the activation of ALK. Taken together, these findings not only elucidate the diverse conformations in different ALKs but can also shed light on new strategies for protein engineering and structural-based drug design for ALK.

摘要

异常增殖性淋巴瘤激酶(ALK)的调节激酶活性已被观察到与肿瘤进展的发生有关。ALK 的激活机制被认为与其他受体酪氨酸激酶(RTKs)相似,但 ALK 的独特静态 X 射线晶体构象表明其具有独特的构象转变。在此,我们通过进行增强采样加速分子动力学(aMD)模拟,说明了野生型 ALK 的动态构象特性以及由两种神经母细胞瘤突变(R1275Q 和 Y1278S)和 ATP 结合引起的激酶激活平衡变化。结果表明,野生型 ALK 主要有利于非活性状态,而突变和 ATP 结合促进了向类似活性的构象的明显转变。R1275Q 突变通过使 αC-in 构象刚性来稳定活性构象。Y1278S 突变以破坏π-堆积疏水性簇为代价促进激活,该簇在天然 ALK 非活性构象的稳定中起关键作用。ATP 产生更紧凑的活性位点,从而促进 ALK 的激活。总之,这些发现不仅阐明了不同 ALKs 中的多种构象,而且还为 ALK 的蛋白质工程和基于结构的药物设计提供了新的策略。

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