首页> 外文期刊>Journal of Molecular Biology >Compromise and accommodation in ecotin, a dimeric macromolecular inhibitor of serine proteases.
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Compromise and accommodation in ecotin, a dimeric macromolecular inhibitor of serine proteases.

机译:在丝氨酸蛋白酶的二聚体大分子抑制剂Ecotin中的妥协和适应性。

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Ecotin is a dimeric serine protease inhibitor from Escherichia coli which binds proteases to form a hetero-tetramer with three distinct interfaces: an ecotin-ecotin dimer interface, a larger primary ecotin-protease interface, and a smaller secondary ecotin-protease interface. The contributions of these interfaces to binding and inhibition are unequal. To investigate the contribution and adaptability of each interface, we have solved the structure of two mutant ecotin-trypsin complexes and compared them to the structure of the previously determined wild-type ecotin-trypsin complex. Wild-type ecotin has an affinity of 1 nM for trypsin, while the optimized mutant, ecotin Y69F, D70P, which was found using phage display technologies, inhibits rat trypsin with a K(i) value of 0.08 nM. Ecotin 67-70A, M84R which has four alanine substitutions in the ecotin-trypsin secondary binding site, along with the M84R mutation at the primary site, has a K(i) value against rat trypsin of 0.2 nM. The structure of the ecotin Y69F, D70P-trypsin complex shows minor structural changes in the ecotin-trypsin tetramer. The structure of the ecotin 67-70A, M84R mutant bound to trypsin shows large deviations in the tertiary and quaternary structure of the complex. The trypsin structure shows no significant changes, but the conformation of several loop regions of ecotin are altered, resulting in the secondary site releasing its hold on trypsin. The structure of several regions previously considered to be rigid is also significantly modified. The inherent flexibility of ecotin allows it to accommodate these mutations and still maintain tight binding through the compromises of the protein-protein interfaces in the ecotin-trypsin tetramer. A comparison with two recently described ecotin-like genes from other bacteria suggests that these structural and functional features are conserved in otherwise distant bacterial lineages. Copyright 2000 Academic Press.
机译:Ecotin是一种来自大肠杆菌的二聚丝氨酸蛋白酶抑制剂,可与多种蛋白酶结合形成具有四个不同界面的异四聚体:ecotin-cocotin二聚体界面,较大的主要ecotin-蛋白酶界面和较小的次级ecotin-蛋白酶界面。这些界面对结合和抑制的贡献是不相等的。为了研究每个界面的贡献和适应性,我们解决了两种突变型生态素-胰蛋白酶复合物的结构,并将它们与先前确定的野生型生态素-胰蛋白酶复合物的结构进行了比较。野生型ecotin对胰蛋白酶的亲和力为1 nM,而使用噬菌体展示技术发现的优化突变体ecotin Y69F,D70P可以抑制大鼠胰蛋白酶,其K(i)值为0.08 nM。 Ecotin 67-70A,M84R在Ecotin-胰蛋白酶二级结合位点具有四个丙氨酸取代基,并且在主要位点具有M84R突变,其对大鼠胰蛋白酶的K(i)值为0.2 nM。 Ecotin Y69F,D70P-胰蛋白酶复合物的结构在ecotin-胰蛋白酶四聚体中显示较小的结构变化。与胰蛋白酶结合的Ecotin 67-70A,M84R突变体的结构在复合物的三级和四级结构中显示出较大的偏差。胰蛋白酶的结构没有显示出明显的变化,但是Ecotin的几个环区域的构象发生了变化,导致二级位点释放了对胰蛋白酶的控制。先前被认为是刚性的几个区域的结构也被显着修改。 Ecotin固有的柔韧性使其能够适应这些突变,并通过破坏Ecotin-胰蛋白酶四聚体中的蛋白质-蛋白质界面而仍然保持紧密结合。与来自其他细菌的两个最近描述的类似生态素的基因的比较表明,这些结构和功能特征在其他遥远的细菌谱系中是保守的。版权所有2000学术出版社。

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