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人血浆激肽释放酶催化结构域的表达、结晶及三维结构

Expression, crystallization, and three-dimensional structure of the catalytic domain of human plasma kallikrein.

作者信息

Tang Jie, Yu Christine Luong, Williams Steven R, Springman Eric, Jeffery Douglas, Sprengeler Paul A, Estevez Alberto, Sampang Jun, Shrader William, Spencer Jeff, Young Wendy, McGrath Mary, Katz Bradley A

机构信息

Department of Structural Chemistry, Celera Genomics, South San Francisco, California 94080, USA.

出版信息

J Biol Chem. 2005 Dec 9;280(49):41077-89. doi: 10.1074/jbc.M506766200. Epub 2005 Sep 30.

Abstract

Plasma kallikrein is a serine protease that has many important functions, including modulation of blood pressure, complement activation, and mediation and maintenance of inflammatory responses. Although plasma kallikrein has been purified for 40 years, its structure has not been elucidated. In this report, we described two systems (Pichia pastoris and baculovirus/Sf9 cells) for expression of the protease domain of plasma kallikrein, along with the purification and high resolution crystal structures of the two recombinant forms. In the Pichia pastoris system, the protease domain was expressed as a heterogeneously glycosylated zymogen that was activated by limited trypsin digestion and treated with endoglycosidase H deglycosidase to reduce heterogeneity from the glycosylation. The resulting protein was chromatographically resolved into four components, one of which was crystallized. In the baculovirus/Sf9 system, homogeneous, crystallizable, and nonglycosylated protein was expressed after mutagenizing three asparagines (the glycosylation sites) to glutamates. When assayed against the peptide substrates, pefachrome-PK and oxidized insulin B chain, both forms of the protease domain were found to have catalytic activity similar to that of the full-length protein. Crystallization and x-ray crystal structure determination of both forms have yielded the first three-dimensional views of the catalytic domain of plasma kallikrein. The structures, determined at 1.85 A for the endoglycosidase H-deglycosylated protease domain produced from P. pastoris and at 1.40 A for the mutagenically deglycosylated form produced from Sf9 cells, show that the protease domain adopts a typical chymotrypsin-like serine protease conformation. The structural information provides insights into the biochemical and enzymatic properties of plasma kallikrein and paves the way for structure-based design of protease inhibitors that are selective either for or against plasma kallikrein.

摘要

血浆激肽释放酶是一种丝氨酸蛋白酶,具有许多重要功能,包括调节血压、补体激活以及介导和维持炎症反应。尽管血浆激肽释放酶已被纯化40年,但其结构尚未阐明。在本报告中,我们描述了两种用于表达血浆激肽释放酶蛋白酶结构域的系统(毕赤酵母和杆状病毒/Sf9细胞),以及两种重组形式的纯化和高分辨率晶体结构。在毕赤酵母系统中,蛋白酶结构域作为一种异源糖基化的酶原表达,通过有限的胰蛋白酶消化激活,并用内切糖苷酶H去糖基化酶处理以减少糖基化的异质性。所得蛋白质通过色谱法分离为四个组分,其中一个组分结晶。在杆状病毒/Sf9系统中,将三个天冬酰胺(糖基化位点)突变为谷氨酸后,表达出了均一、可结晶且无糖基化的蛋白质。当用肽底物、嗜铬素-PK和氧化胰岛素B链进行检测时,发现两种形式的蛋白酶结构域都具有与全长蛋白质相似的催化活性。两种形式的结晶和X射线晶体结构测定产生了血浆激肽释放酶催化结构域的首个三维视图。毕赤酵母产生的经内切糖苷酶H去糖基化的蛋白酶结构域的结构在1.85埃分辨率下测定,Sf9细胞产生的经诱变去糖基化形式的结构在1.40埃分辨率下测定,结果表明蛋白酶结构域采用典型的胰凝乳蛋白酶样丝氨酸蛋白酶构象。该结构信息为深入了解血浆激肽释放酶的生化和酶学特性提供了线索,并为基于结构设计对血浆激肽释放酶具有选择性的蛋白酶抑制剂铺平了道路。

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