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通过金属激活使胰蛋白酶特异性脱域。

Delocalizing trypsin specificity with metal activation.

作者信息

Willett W S, Brinen L S, Fletterick R J, Craik C S

机构信息

Department of Pharmaceutical Chemistry, University of California at San Francisco 94143-0446, USA.

出版信息

Biochemistry. 1996 May 14;35(19):5992-8. doi: 10.1021/bi9530191.

Abstract

Recognition for proteolysis by trypsin depends almost exclusively on tight binding of arginine or lysine side chains by the primary substrate specificity pocket. Although extended subsite interactions are important for catalysis, the majority of binding energy is localized in the P1 pocket. Analysis of the interactions of trypsin with the P1 residue of the bound inhibitors ecotin and bovine pancreatic trypsin inhibitor suggested that the mutation D189S would improve metal-assisted trypsin N143H, E151H specificity toward peptides that have a Tyr at P1 and a His at P2'. In the presence of transition metals, the catalytic efficiency of the triple mutant Tn N143H, E151H, D189S improved toward the tyrosine-containing peptide AGPYAHSS. Trypsin N143H, E151H, D189S exhibits a 25-fold increase in activity with nickel and a 150-fold increase in activity with zinc relative to trypsin N143H, E151H on this peptide. In addition, activity of trypsin N143H, E151H, D189S toward an arginine-containing peptide, YLVGPRGHFYDA, is enhanced by copper, nickel, and zinc. With this substrate, copper yields a 30-fold, nickel a 70-fold, and zinc a 350-fold increase in activity over background hydrolysis without metal. These results demonstrate that the engineering of multiple substrate binding subsites in trypsin can be used to delocalize protease specificity by increasing relative substrate binding contributions from alternate engineered subsites.

摘要

胰蛋白酶对蛋白水解的识别几乎完全取决于主要底物特异性口袋对精氨酸或赖氨酸侧链的紧密结合。虽然延伸的亚位点相互作用对催化很重要,但大部分结合能集中在P1口袋中。对胰蛋白酶与结合的抑制剂依科汀和牛胰蛋白酶抑制剂的P1残基相互作用的分析表明,D189S突变将改善金属辅助的胰蛋白酶N143H、E151H对在P1处有酪氨酸且在P2'处有组氨酸的肽的特异性。在过渡金属存在下,三重突变体Tn N143H、E151H、D189S对含酪氨酸的肽AGPYAHSS的催化效率提高。相对于胰蛋白酶N143H、E151H,胰蛋白酶N143H、E151H、D189S在镍存在下活性增加25倍,在锌存在下活性增加150倍。此外,胰蛋白酶N143H、E151H、D189S对含精氨酸的肽YLVGPRGHFYDA的活性被铜、镍和锌增强。对于这种底物,与无金属时的背景水解相比,铜使活性增加30倍,镍使活性增加70倍,锌使活性增加350倍。这些结果表明,通过增加来自其他工程化亚位点的相对底物结合贡献,在胰蛋白酶中对多个底物结合亚位点进行工程改造可用于使蛋白酶特异性离域化。

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