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Engineering protein allostery: 1.05 Å resolution structure and enzymatic properties of a Na+-activated trypsin

机译:工程蛋白的变构:Na +激活的胰蛋白酶的1.05Å分辨率结构和酶学性质

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摘要

Some trypsin-like proteases are endowed with Na+-dependent allosteric enhancement of catalytic activity, but this important mechanism has been difficult to engineer in other members of the family. Replacement of nineteen amino acids in Streptomyces griseus trypsin targeting the active site and the Na+ binding site were found necessary to generate efficient Na+ activation. Remarkably, this property was linked to the acquisition of a new substrate selectivity profile similar to that of factor Xa, a Na+-activated protease involved in blood coagulation. The X-ray crystal structure of the mutant trypsin solved to 1.05 Å resolution defines the engineered Na+ site and active site loops in unprecedented detail. The results demonstrate that trypsin can be engineered into an efficient allosteric protease and that Na+ activation is interwoven with substrate selectivity in the trypsin scaffold.
机译:一些类胰蛋白酶的蛋白酶具有依赖Na + 的变构催化活性,但是这一重要的机制在该家族的其他成员中却难以设计。发现灰链霉菌胰蛋白酶中靶向活性位点和Na + 结合位点的19个氨基酸的替换是产生有效Na + 激活所必需的。值得注意的是,该性质与获得新的底物选择性谱有关,该谱与因子Xa类似,后者是参与血液凝固的Na + 活化蛋白酶。解析为1.05Å分辨率的突变胰蛋白酶的X射线晶体结构以前所未有的细节定义了工程化的Na + 位点和活性位点环。结果表明胰蛋白酶可以被工程化为一种高效的变构蛋白酶,并且Na + 激活与胰蛋白酶支架中的底物选择性交织在一起。

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