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在胰蛋白酶的结合口袋中重新定位一个负电荷。

Relocating a negative charge in the binding pocket of trypsin.

作者信息

Perona J J, Tsu C A, McGrath M E, Craik C S, Fletterick R J

机构信息

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

出版信息

J Mol Biol. 1993 Apr 5;230(3):934-49. doi: 10.1006/jmbi.1993.1211.

Abstract

The functional and structural consequences of altering the position of the negatively charged aspartate residue at the base of the specificity pocket of trypsin have been examined by site-directed mutagenesis, kinetic characterization and crystallographic analysis. Anionic rat trypsin D189G/G226D exhibits a high level of catalytic activity on activated amide substrates, but its relative preference for lysine versus arginine as the P1 site residue is shifted by 30 to 40-fold in favor of lysine. The crystal structure of this variant has been determined in complexes with BPTI (bovine pancreatic trypsin inhibitor), APPI (amyloid beta-protein precursor inhibitor domain) and benzamidine inhibitors, at resolutions of 2.1 A, 2.5 A and 2.2 A, respectively. Asp226 bridges the base of the specificity pocket with its negative charge partially buried by interactions made with Ser190 and Tyr228. An equal reduction in the affinity of the variant enzyme for Arg and Lys substrates is attributable to a decreased electrostatic interaction of each ligand with the relocated aspartate residue. Comparison of structural and functional parameters with those of wild-type trypsin suggests that direct hydrogen-bonding electrostatic contacts in the S1 site do not significantly improve the free energy of substrate binding relative to indirect water-mediated interactions. The conformation adopted by Asp226, as well as by other adjacent side-chain and backbone groups, depends upon the ligand bound in the primary specificity pocket. This structural flexibility may be of critical importance to the retention of catalytic activity by the variant enzyme.

摘要

通过定点诱变、动力学表征和晶体学分析,研究了改变胰蛋白酶特异性口袋底部带负电荷的天冬氨酸残基位置所产生的功能和结构后果。阴离子型大鼠胰蛋白酶D189G/G226D对活化酰胺底物表现出高水平的催化活性,但其对赖氨酸与精氨酸作为P1位点残基的相对偏好发生了30至40倍的变化,转而更倾向于赖氨酸。已分别以2.1埃、2.5埃和2.2埃的分辨率测定了该变体与BPTI(牛胰蛋白酶抑制剂)、APPI(淀粉样β蛋白前体抑制剂结构域)和苯甲脒抑制剂形成的复合物的晶体结构。天冬氨酸226通过其负电荷桥接特异性口袋底部,该负电荷部分被与丝氨酸190和酪氨酸228的相互作用所掩埋。变体酶对精氨酸和赖氨酸底物亲和力的同等降低归因于每个配体与重新定位的天冬氨酸残基之间静电相互作用的减弱。将结构和功能参数与野生型胰蛋白酶的参数进行比较表明,相对于间接的水介导相互作用,S1位点中直接的氢键静电接触并不能显著提高底物结合的自由能。天冬氨酸226以及其他相邻侧链和主链基团所采用的构象取决于结合在主要特异性口袋中的配体。这种结构灵活性对于变体酶保持催化活性可能至关重要。

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