化学
拟肽
TMPRSS6
蛋白酵素
丝氨酸蛋白酶
丝氨酸
合理设计
选择性
蛋白酶
生物化学
结构-活动关系
共价键
组合化学
立体化学
酶抑制剂
酶
结合选择性
效力
氨基酸
药物发现
分子模型
活动站点
铅化合物
蛋白质工程
化学合成
肽序列
作者
Walid Guerrab,Matthieu Lepage,Antoine Désilets,Alexandre Joushomme,Michael Desgagné,Ulrike Froehlich,Richard Leduc,Pierre‐Luc Boudreault
标识
DOI:10.1021/acs.jmedchem.5c01998
摘要
Developing selective protease inhibitors is a challenging task due to the high structural resemblance of their catalytic pockets. Here, we aimed to develop selective inhibitors targeting TMPRSS6, a protease involved in regulating iron homeostasis. By exploiting structural differences in the catalytic subpockets between TMPRSS6 and matriptase, we optimized ketobenzothiazole-based peptidomimetics using the P4-P3-P2-Arg-Kbt scaffold. We found that a combination of bulky residues at P4 and P3, along with polar amino acids at P2, enhance selectivity while preserving high potency. Notably, WGU55 showed exceptional selectivity toward TMPRSS6 over matriptase and minimal off-target inhibition of coagulation serine proteases such as Factor Xa and Thrombin, representing, to our knowledge, the most selective TMPRSS6 inhibitor identified to date. Cell-based assays confirmed the inhibitor's high potency and selectivity. These findings validate a rational design strategy for the selective inhibition of TMPRSS6, paving the way for the development of targeted therapeutics based on peptidomimetics.
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