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人组织蛋白酶S前体的Cys25→Ala突变体的晶体结构阐明了酶与前序列的相互作用。

The crystal structure of a Cys25 -> Ala mutant of human procathepsin S elucidates enzyme-prosequence interactions.

作者信息

Kaulmann Guido, Palm Gottfried J, Schilling Klaus, Hilgenfeld Rolf, Wiederanders Bernd

机构信息

Institut für Biochemie I, Klinikum der Friedrich-Schiller-Universität Jena, D-07740 Jena, Germany.

出版信息

Protein Sci. 2006 Nov;15(11):2619-29. doi: 10.1110/ps.062401806.

Abstract

The crystal structure of the active-site mutant Cys25 --> Ala of glycosylated human procathepsin S is reported. It was determined by molecular replacement and refined to 2.1 Angstrom resolution, with an R-factor of 0.198. The overall structure is very similar to other cathepsin L-like zymogens of the C1A clan. The peptidase unit comprises two globular domains, and a small third domain is formed by the N-terminal part of the prosequence. It is anchored to the prosegment binding loop of the enzyme. Prosegment residues beyond the prodomain dock to the substrate binding cleft in a nonproductive orientation. Structural comparison with published data for mature cathepsin S revealed that procathepsin S residues Phe146, Phe70, and Phe211 adopt different orientations. Being part of the S1' and S2 pockets, they may contribute to the selectivity of ligand binding. Regarding the prosequence, length, orientation and anchoring of helix alpha3p differ from related zymogens, thereby possibly contributing to the specificity of propeptide-enzyme interaction in the papain family. The discussion focuses on the functional importance of the most conserved residues in the prosequence for structural integrity, inhibition and folding assistance, considering scanning mutagenesis data published for procathepsin S and for its isolated propeptide.

摘要

报道了糖基化人组织蛋白酶原S活性位点突变体Cys25→Ala的晶体结构。通过分子置换法确定结构,并将其精修至2.1埃分辨率,R因子为0.198。整体结构与C1A家族的其他组织蛋白酶L样酶原非常相似。肽酶单元由两个球状结构域组成,一个小的第三结构域由前序列的N端部分形成。它锚定在酶的前体片段结合环上。前结构域之外的前体片段残基以非生产性方向对接至底物结合裂隙。与已发表的成熟组织蛋白酶S数据进行结构比较表明,组织蛋白酶原S残基Phe146、Phe70和Phe211呈现不同的取向。作为S1'和S2口袋的一部分,它们可能有助于配体结合的选择性。关于前序列,α3p螺旋的长度、取向和锚定与相关酶原不同,从而可能有助于木瓜蛋白酶家族中前肽-酶相互作用的特异性。讨论聚焦于前序列中最保守残基对结构完整性、抑制作用和折叠辅助的功能重要性,并参考了已发表的关于组织蛋白酶原S及其分离前肽的扫描诱变数据。

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