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凝血酶——分子动力学视角

Thrombin - A Molecular Dynamics Perspective.

作者信息

Wu Dizhou, Prem Athul, Xiao Jiajie, Salsbury Freddie R

机构信息

Department of Physics, Wake Forest University, Winston-Salem, NC, 27106, USA.

Freenome, South San Francisco, CA, 94080, USA.

出版信息

Mini Rev Med Chem. 2024;24(11):1112-1124. doi: 10.2174/1389557523666230821102655.

Abstract

Thrombin is a crucial enzyme involved in blood coagulation, essential for maintaining circulatory system integrity and preventing excessive bleeding. However, thrombin is also implicated in pathological conditions such as thrombosis and cancer. Despite the application of various experimental techniques, including X-ray crystallography, NMR spectroscopy, and HDXMS, none of these methods can precisely detect thrombin's dynamics and conformational ensembles at high spatial and temporal resolution. Fortunately, molecular dynamics (MD) simulation, a computational technique that allows the investigation of molecular functions and dynamics in atomic detail, can be used to explore thrombin behavior. This review summarizes recent MD simulation studies on thrombin and its interactions with other biomolecules. Specifically, the 17 studies discussed here provide insights into thrombin's switch between 'slow' and 'fast' forms, active and inactive forms, the role of Na binding, the effects of light chain mutation, and thrombin's interactions with other biomolecules. The findings of these studies have significant implications for developing new therapies for thrombosis and cancer. By understanding thrombin's complex behavior, researchers can design more effective drugs and treatments that target thrombin.

摘要

凝血酶是参与血液凝固的关键酶,对于维持循环系统完整性和防止过度出血至关重要。然而,凝血酶也与诸如血栓形成和癌症等病理状况有关。尽管应用了各种实验技术,包括X射线晶体学、核磁共振光谱学和氢氘交换质谱法,但这些方法均无法在高空间和时间分辨率下精确检测凝血酶的动力学和构象集合。幸运的是,分子动力学(MD)模拟作为一种能够在原子细节上研究分子功能和动力学的计算技术,可用于探索凝血酶的行为。本综述总结了近期关于凝血酶及其与其他生物分子相互作用的分子动力学模拟研究。具体而言,这里讨论的17项研究深入探讨了凝血酶在“慢”和“快”形式、活性和非活性形式之间的转换、钠结合的作用、轻链突变的影响以及凝血酶与其他生物分子的相互作用。这些研究结果对于开发针对血栓形成和癌症的新疗法具有重要意义。通过了解凝血酶的复杂行为,研究人员可以设计出更有效的靶向凝血酶的药物和治疗方法。

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