College of Food Science and Engineering, National Engineering Laboratory of Wheat and Corn Deep Processing, Jilin Agricultural University, Changchun 130118, Jilin, People's Republic of China.
Phys Chem Chem Phys. 2021 Mar 21;23(11):6685-6694. doi: 10.1039/d1cp00172h. Epub 2021 Mar 12.
Angiotensin-converting enzyme (ACE) is a well-known zinc metalloenzyme whose physiological functions are vital to blood pressure regulation and management of hypertension. The development of more efficient peptide inhibitors is of great significance for the prevention and treatment of hypertension. In this research, molecular dynamics (MD) simulations were implemented to study the specific binding mechanism and interaction between human ACE (hACE) and tetrapeptides, YIHP, YKHP, YLVR, and YRHP. The calculation of relative binding free energy on the one hand verified that YLVR, an experimentally identified inhibitor, has a stronger inhibitory effect and, on the other hand, indicated that YRHP is the "best" inhibitor with the strongest binding affinity. Inspection of atomic interactions discriminated the specific binding mode of each tetrapeptide inhibitor with hACE and explained the difference of their affinity. Moreover, in-depth analysis of the MD production trajectories, including clustering, principal component analysis, and dynamic network analysis, determined the dynamic correlation between tetrapeptides and hACE and obtained the communities' distribution of a protein-ligand complex. The present study provides essential insights into the binding mode and interaction mechanism of the hACE-peptide complex, which paves a path for designing effective anti-hypertensive peptides.
血管紧张素转换酶(ACE)是一种众所周知的锌金属酶,其生理功能对于血压调节和高血压管理至关重要。开发更有效的肽抑制剂对于高血压的预防和治疗具有重要意义。在这项研究中,我们进行了分子动力学(MD)模拟,以研究人源 ACE(hACE)与四肽 YIHP、YKHP、YLVR 和 YRHP 之间的特定结合机制和相互作用。一方面,相对结合自由能的计算验证了实验鉴定的抑制剂 YLVR 具有更强的抑制作用,另一方面表明 YRHP 是结合亲和力最强的“最佳”抑制剂。原子相互作用的检查区分了每个四肽抑制剂与 hACE 的特定结合模式,并解释了它们亲和力的差异。此外,对 MD 生产轨迹进行深入分析,包括聚类、主成分分析和动态网络分析,确定了四肽与 hACE 之间的动态相关性,并获得了蛋白质-配体复合物的社区分布。本研究提供了 hACE-肽复合物结合模式和相互作用机制的重要见解,为设计有效的抗高血压肽铺平了道路。