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通过结合自由能计算对所有8000种三肽进行全面分析,研究ACE抑制肽的特性和作用机制。

Investigation on the characteristics and mechanisms of ACE inhibitory peptides by a thorough analysis of all 8000 tripeptides via binding free energy calculation.

作者信息

Chen Ruiyao, Miao Yulu, Hao Xuan, Gao Bei, Ma Mingzhe, Zhang John Z H, Wang Rui, Li Sha, He Xiao, Zhang Lujia

机构信息

State Key Laboratory of Bioreactor Engineering School of Biotechnology East China University of Science and Technology Shanghai China.

Shanghai Engineering Research Center of Molecular Therapeutics and New Drug Development School of Chemistry and Molecular Engineering East China Normal University Shanghai China.

出版信息

Food Sci Nutr. 2021 May 3;9(6):2943-2953. doi: 10.1002/fsn3.2253. eCollection 2021 Jun.

Abstract

Food-derived angiotensin I-converting enzyme (ACE) inhibitory peptides represent a potential source of new antihypertensive. However, their characteristics and binding mechanisms were not well understood. In this study, novel energy calculation and experimentation were combined to elucidate the characteristics and mechanisms of ACE inhibitory tripeptides. ACE inhibitory activity of all 8,000 tripeptides was investigated by in silico experiments. IC values of the five top-rated tripeptides ranged from 5.86 to 21.84 μM. Five hundred top-ranked tripeptides were chosen for detailed structure-activity analysis, and a significant preference for aromatic amino acids at both C- and N-terminus was found. By binding free energy analysis of nine representative tripeptides via MM/GBSA, electrostatic energy was found to be the leading energy that contributed to the binding of ACE with its high affinity tripeptides. Besides, S355, V380, and V518, three residues positioned around the classical binding pockets of ACE, also played a key role in ACE's binding. Therefore, for tripeptides, their binding pockets in ACE were redefined. In conclusion, the characteristics of ACE inhibitory peptides were more deeply illustrated by the thorough analysis of all tripeptides. The energy analysis allows a better understanding of the binding mechanisms of ACE inhibitory peptides, which could be used to redesign the ACE inhibitors for stronger inhibitory activity.

摘要

食物来源的血管紧张素转换酶(ACE)抑制肽是新型抗高血压药物的潜在来源。然而,它们的特性和结合机制尚未得到充分了解。在本研究中,结合了新的能量计算和实验来阐明ACE抑制性三肽的特性和机制。通过计算机模拟实验研究了所有8000种三肽的ACE抑制活性。排名前五的三肽的IC值范围为5.86至21.84μM。选择了排名前500的三肽进行详细的构效分析,发现C端和N端对芳香族氨基酸均有明显偏好。通过MM/GBSA对9种代表性三肽进行结合自由能分析,发现静电能是导致ACE与其高亲和力三肽结合的主要能量。此外,位于ACE经典结合口袋周围的三个残基S355、V380和V518在ACE的结合中也起关键作用。因此,对于三肽,重新定义了它们在ACE中的结合口袋。总之,通过对所有三肽的全面分析,更深入地阐明了ACE抑制肽的特性。能量分析有助于更好地理解ACE抑制肽的结合机制,可用于重新设计具有更强抑制活性的ACE抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8451/8194939/b6400cc4adb7/FSN3-9-2943-g005.jpg

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