Papain-like lysosomal cysteine proteases and their inhibitors: drug discovery targets?

Dŭsan Turk, Boris Turk, Vito Turk
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引用次数: 43

Abstract

Papain-like lysosomal cysteine proteases are processive and digestive enzymes that are expressed in organisms from bacteria to humans. Increasing knowledge about the physiological and pathological roles of cysteine proteases is bringing them into the focus of drug discovery research. These proteases have rather short active-site clefts, comprising three well defined substrate-binding subsites (S2, S1 and S1') and additional broad binding areas (S4, S3, S2' and S3'). The geometry of the active site distinguishes cysteine proteases from other protease classes, such as serine and aspartic proteases, which have six and eight substrate-binding sites respectively. Exopeptidases (cathepsins B, C, H and X), in contrast with endopeptidases (such as cathepsins L, S, V and F), possess structural features that facilitate the binding of N- and C-terminal groups of substrates into the active-site cleft. Other than a clear preference for free chain termini in the case of exopeptidases, the substrate-binding sites exhibit no strict specificities. Instead, their subsite preferences arise more from the specific exclusion of substrate types. This presents a challenge for the design of inhibitors to target a specific cathepsin: only the cumulative effect of an assembly of inhibitor fragments will bring the desired result.

木瓜样溶酶体半胱氨酸蛋白酶及其抑制剂:药物发现靶点?
木瓜蛋白酶样溶酶体半胱氨酸蛋白酶是一种显性消化酶,在从细菌到人类的生物体中都有表达。随着对半胱氨酸蛋白酶生理和病理作用的认识不断增加,半胱氨酸蛋白酶已成为药物开发研究的重点。这些蛋白酶具有相当短的活性位点间隙,包括三个明确的底物结合亚位点(S2, S1和S1')和额外的宽结合区(S4, S3, S2'和S3')。活性位点的几何形状将半胱氨酸蛋白酶与其他类型的蛋白酶区分开来,如丝氨酸蛋白酶和天冬氨酸蛋白酶,它们分别有6个和8个底物结合位点。与内肽酶(如组织蛋白酶L、S、V和F)相比,外肽酶(组织蛋白酶B、C、H和X)具有促进底物N端和C端基团结合到活性位点间隙的结构特征。在外肽酶的情况下,除了对自由链末端的明显偏好外,底物结合位点没有严格的特异性。相反,它们的亚位点偏好更多地来自于对底物类型的特定排除。这对设计针对特定组织蛋白酶的抑制剂提出了挑战:只有抑制剂片段组装的累积效应才能带来预期的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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