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工程化肽大环可以高选择性抑制基质金属蛋白酶。

Engineered Peptide Macrocycles Can Inhibit Matrix Metalloproteinases with High Selectivity.

机构信息

Institute of Chemical Sciences and Engineering, École Polytechnique Fédérale de Lausanne (EPFL), 1015, Lausanne, Switzerland.

出版信息

Angew Chem Int Ed Engl. 2019 Aug 19;58(34):11801-11805. doi: 10.1002/anie.201906791. Epub 2019 Jul 24.

Abstract

Matrix metalloproteinases (MMPs) are zinc-dependent endopeptidases at the intersection of health and disease due to their involvement in processes such as tissue repair and immunity as well as cancer and inflammation. Because of the high structural conservation in the catalytic domains and shallow substrate binding sites, selective, small-molecule inhibitors of MMPs have remained elusive. In a tour-de-force peptide engineering approach combining phage-display selections, rational design of enhanced zinc chelation, and d-amino acid screening, we succeeded in developing a first synthetic MMP-2 inhibitor that combines high potency (K =1.9±0.5 nm), high target selectivity, and proteolytic stability, and thus fulfills all the required qualities for in cell culture and in vivo application. Our work suggests that selective MMP inhibition is achievable with peptide macrocycles and paves the way for developing specific inhibitors for application as chemical probes and potentially therapeutics.

摘要

基质金属蛋白酶(MMPs)是锌依赖性内肽酶,在健康和疾病的交叉点发挥作用,因为它们参与组织修复和免疫以及癌症和炎症等过程。由于催化结构域的高度结构保守性和底物结合位点的浅,选择性、小分子 MMP 抑制剂一直难以捉摸。在噬菌体展示选择、增强锌螯合的合理设计和 d-氨基酸筛选相结合的精湛肽工程方法中,我们成功地开发了第一个合成 MMP-2 抑制剂,它具有高活性(K =1.9±0.5 nm)、高靶选择性和蛋白水解稳定性,因此满足了细胞培养和体内应用所需的所有特性。我们的工作表明,选择性 MMP 抑制是可以通过肽大环实现的,并为开发作为化学探针和潜在治疗剂的特异性抑制剂铺平了道路。

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