Perona J J, Tsu C A, Craik C S, Fletterick R J
Department of Pharmaceutical Chemistry, University of California, San Francisco 94143-0446.
J Mol Biol. 1993 Apr 5;230(3):919-33. doi: 10.1006/jmbi.1993.1210.
The crystal structure of rat anionic trypsin D189G/G226D has been determined in complexes with each of the protein inhibitors APPI (amyloid beta-protein precursor inhibitor domain) and BPTI (bovine pancreatic trypsin inhibitor) at resolutions of 2.5 A and 2.1 A, respectively. Comparisons with the structure of the bovine trypsin-BPTI complex show that the enzyme-inhibitor interactions in rat trypsin are dominated to a much greater degree by attractive and repulsive electrostatic forces. Decreased structural complementarity in the flanking regions of the interface formed with BPTI is reflected in significantly weaker inhibition relative to bovine trypsin. The primary active site loop of BPTI adopts slightly different conformations when bound to rat and cow trypsins, reflecting a broader entrance to the binding pocket in the former. Tight complementarity of each loop conformer to the respective active sites then gives rise to significantly different overall orientations of the inhibitor when bound to the two enzymes. The crystal structures of trypsin bound to these protein inhibitors are excellent models of the Michaelis complexes, which permit visualization of substrate interactions both N and C-terminal to the cleaved bond, while maintaining identical reaction chemistry. They will be uniquely useful to the structure-function analysis of variant rat trypsin enzymes.
已分别在分辨率为2.5埃和2.1埃的情况下,确定了大鼠阴离子胰蛋白酶D189G/G226D与蛋白抑制剂APPI(淀粉样β蛋白前体抑制剂结构域)和BPTI(牛胰蛋白酶抑制剂)形成的复合物的晶体结构。与牛胰蛋白酶-BPTI复合物的结构比较表明,大鼠胰蛋白酶中酶与抑制剂的相互作用在更大程度上受吸引和排斥静电力的主导。与牛胰蛋白酶相比,与BPTI形成的界面侧翼区域结构互补性降低,这反映在抑制作用明显较弱。BPTI的主要活性位点环在与大鼠和牛胰蛋白酶结合时采用略有不同的构象,这反映出前者结合口袋的入口更宽。然后,每个环构象体与各自活性位点的紧密互补性导致抑制剂与两种酶结合时整体取向明显不同。与这些蛋白抑制剂结合的胰蛋白酶的晶体结构是米氏复合物的优秀模型,它可以可视化切割键N端和C端的底物相互作用,同时保持相同的反应化学性质。它们对于变异大鼠胰蛋白酶的结构-功能分析将具有独特的用途。