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一种由锌结合二硫醇部分和特异性口袋结合附属物组成的新型ADAM17抑制剂。

A New Inhibitor of ADAM17 Composed of a Zinc-Binding Dithiol Moiety and a Specificity Pocket-Binding Appendage.

作者信息

Tateishi Hiroshi, Tateishi Mika, Radwan Mohamed O, Masunaga Takuya, Kawatashiro Kosuke, Oba Yasunori, Oyama Misato, Inoue-Kitahashi Natsuki, Fujita Mikako, Okamoto Yoshinari, Otsuka Masami

机构信息

Medicinal and Biological Chemistry Science Farm Joint Research Laboratory, Faculty of Life Sciences, Kumamoto University.

Chemistry of Natural Compounds Department, Pharmaceutical and Drug Industries Research Division, National Research Centre.

出版信息

Chem Pharm Bull (Tokyo). 2021;69(11):1123-1130. doi: 10.1248/cpb.c21-00701.

Abstract

A disintegrin and metalloproteinase 17 (ADAM17) is a zinc-dependent enzyme that catalyzes the cleavage of the extracellular domains of various transmembrane proteins. ADAM17 is regarded as a promising drug target for the suppression of various diseases, including cancer metastasis. We synthesized a new ADAM17 inhibitor, SN-4, composed of a zinc-binding dithiol moiety and an appendage that specifically binds to a pocket of ADAM17. We show that SN-4 inhibits the ability of ADAM17 to cleave tumor necrosis factor α (TNF-α) in vitro. This activity was reduced by the addition of zinc, indicating the importance of the zinc chelating dithiol moiety. Inhibition of TNF-α cleavage by SN-4 in cells was also observed, and with an IC of 3.22 µM, SN-4 showed slightly higher activity than the well-studied ADAM17 inhibitor marimastat. Furthermore, SN-4 was shown to inhibit cleavage of CD44 by ADAM17, but not by ADAM10, and to suppress cell invasion. Molecular docking showed good fitting of the specificity pocket-binding group and one SH of SN-4 and hinted at possible means of structural optimization. This study provides clues for the development of potent and selective ADAM17 inhibitors.

摘要

解整合素金属蛋白酶17(ADAM17)是一种锌依赖性酶,可催化多种跨膜蛋白胞外结构域的裂解。ADAM17被认为是抑制包括癌症转移在内的多种疾病的一个有前景的药物靶点。我们合成了一种新的ADAM17抑制剂SN-4,它由一个锌结合二硫醇部分和一个与ADAM17的一个口袋特异性结合的附属部分组成。我们发现SN-4在体外抑制ADAM17裂解肿瘤坏死因子α(TNF-α)的能力。加入锌后这种活性降低,表明锌螯合二硫醇部分的重要性。在细胞中也观察到SN-4对TNF-α裂解的抑制作用,SN-4的半数抑制浓度为3.22 μM,其活性略高于研究充分的ADAM17抑制剂马立马司他。此外,SN-4被证明可抑制ADAM17对CD44的裂解,但不抑制ADAM10对CD44的裂解,并且可抑制细胞侵袭。分子对接显示SN-4的特异性口袋结合基团和一个巯基配合良好,并暗示了可能的结构优化方法。本研究为开发强效和选择性的ADAM17抑制剂提供了线索。

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