Center for Computational Biology and Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas 66047, United States.
J Phys Chem Lett. 2021 May 27;12(20):4814-4822. doi: 10.1021/acs.jpclett.1c01064. Epub 2021 May 17.
Angiotensin converting enzyme 2 (ACE2) plays a key role in renin-angiotensin system regulation and amino acid homeostasis. Human ACE2 acts as the receptor for severe acute respiratory syndrome coronaviruses SARS-CoV and SARS-CoV-2. ACE2 is also widely expressed in epithelial cells of the lungs, heart, kidney, and pancreas. It is considered an important drug target for treating SARS-CoV-2 as well as pulmonary diseases, heart failure, hypertension, renal diseases, and diabetes. Despite the critical importance, the mechanism of ligand binding to the human ACE2 receptor remains unknown. Here, we have addressed this challenge through all-atom simulations using a novel ligand Gaussian accelerated molecular dynamics (LiGaMD) method. Microsecond time scale LiGaMD simulations have unprecedentedly captured multiple times of spontaneous binding and unbinding of a potent inhibitor MLN-4760 in the ACE2 receptor. With ligand far away in the unbound state, the ACE2 receptor samples distinct Open, Partially Open, Closed, and Fully Closed conformations. Upon ligand binding to the active site, conformational ensemble of the ACE2 receptor is biased toward the Closed state as observed in the X-ray experimental structure. The LiGaMD simulations thus suggest a conformational selection mechanism for ligand recognition by the highly flexible ACE2 receptor, which is expected to facilitate rational drug design targeting human ACE2 against coronaviruses and other related human diseases.
血管紧张素转化酶 2(ACE2)在肾素-血管紧张素系统调节和氨基酸平衡中发挥关键作用。人类 ACE2 是严重急性呼吸系统综合征冠状病毒 SARS-CoV 和 SARS-CoV-2 的受体。ACE2 也广泛表达于肺、心脏、肾脏和胰腺的上皮细胞中。它被认为是治疗 SARS-CoV-2 以及肺部疾病、心力衰竭、高血压、肾脏疾病和糖尿病的重要药物靶点。尽管至关重要,但配体与人类 ACE2 受体结合的机制仍不清楚。在这里,我们通过使用新型配体高斯加速分子动力学(LiGaMD)方法的全原子模拟解决了这一挑战。微秒时间尺度的 LiGaMD 模拟前所未有地捕捉到了强效抑制剂 MLN-4760 在 ACE2 受体中多次自发结合和解离的过程。在配体远离未结合状态时,ACE2 受体可以采样到不同的开放、部分开放、关闭和完全关闭构象。当配体结合到活性位点时,ACE2 受体的构象集合偏向于 X 射线实验结构中观察到的关闭状态。因此,LiGaMD 模拟表明了一种配体识别的构象选择机制,对于针对冠状病毒和其他相关人类疾病的人类 ACE2 的合理药物设计具有重要意义。