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基质金属蛋白酶-1介导的胶原蛋白分解早期催化事件的机制

Mechanism of the Early Catalytic Events in the Collagenolysis by Matrix Metalloproteinase-1.

作者信息

Waheed Sodiq O, Varghese Ann, DiCastri Isabella, Kaski Brenden, LaRouche Ciara, Fields Gregg B, Karabencheva-Christova Tatyana G

机构信息

Department of Chemistry, Michigan Technological University, Houghton, Michigan, 49931, USA.

Department of Kinesiology and Integrative Physiology, Michigan Technological University, Houghton, Michigan, 49931, USA.

出版信息

Chemphyschem. 2023 Feb 1;24(3):e202200649. doi: 10.1002/cphc.202200649. Epub 2022 Oct 25.

Abstract

Metalloproteinase-1 (MMP-1) catalyzed collagen degradation is essential for a wide variety of normal physiological processes, while at the same time contributing to several diseases in humans. Therefore, a comprehensive understanding of this process is of great importance. Although crystallographic and spectroscopic studies provided fundamental information about the structure and function of MMP-1, the precise mechanism of collagen degradation especially considering the complex and flexible structure of the substrate, remains poorly understood. In addition, how the protein environment dynamically reorganizes at the atomic scale into a catalytically active state capable of collagen hydrolysis remains unknown. In this study, we applied experimentally-guided multiscale molecular modeling methods including classical molecular dynamics (MD), well-tempered (WT) classical metadynamics (MetD), combined quantum mechanics/molecular mechanics (QM/MM) MD and QM/MM MetD simulations to explore and characterize the early catalytic events of MMP-1 collagenolysis. Importantly the study provided a complete atomic and dynamic description of the transition from the open to the closed form of the MMP-1•THP complex. Notably, the formation of catalytically active Michaelis complex competent for collagen cleavage was characterized. The study identified the changes in the coordination state of the catalytic zinc(II) associated with the conformational transformation and the formation of catalytically productive ES complex. Our results confirm the essential role of the MMP-1 catalytic domain's α-helices (hA, hB and hC) and the linker region in the transition to the catalytically competent ES complex. Overall, the results provide unique mechanistic insight into the conformational transformations and associated changes in the coordination state of the catalytic zinc(II) that would be important for the design of effective MMP-1 inhibitors.

摘要

金属蛋白酶-1(MMP-1)催化的胶原蛋白降解对于多种正常生理过程至关重要,同时也与人类的多种疾病相关。因此,全面了解这一过程具有重要意义。尽管晶体学和光谱学研究提供了有关MMP-1结构和功能的基本信息,但胶原蛋白降解的精确机制,尤其是考虑到底物复杂且灵活的结构,仍知之甚少。此外,蛋白质环境如何在原子尺度上动态重组为能够水解胶原蛋白的催化活性状态仍然未知。在本研究中,我们应用了实验指导的多尺度分子建模方法,包括经典分子动力学(MD)、温和(WT)经典元动力学(MetD)、量子力学/分子力学(QM/MM)组合MD和QM/MM MetD模拟,以探索和表征MMP-1胶原降解的早期催化事件。重要的是,该研究提供了MMP-1•THP复合物从开放形式到封闭形式转变的完整原子和动态描述。值得注意的是,表征了能够切割胶原蛋白的催化活性米氏复合物的形成。该研究确定了与构象转变和催化活性ES复合物形成相关的催化锌(II)配位状态的变化。我们的结果证实了MMP-1催化结构域的α-螺旋(hA、hB和hC)和连接区域在向催化活性ES复合物转变中的重要作用。总体而言,这些结果为构象转变以及催化锌(II)配位状态的相关变化提供了独特的机制见解,这对于设计有效的MMP-1抑制剂具有重要意义。

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