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Engineered Bacillus lentus subtilisins having altered flexibility.

机译:经改造的柔韧性芽孢杆菌枯草杆菌蛋白酶具有改变的柔韧性。

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摘要

The three-dimensional structures of engineered variants of Bacillus lentus subtilisin having increased enzymatic activity, K27R/N87S/V104Y/N123S/T274A (RSYSA) and N76D/N87S/S103A/V104I (DSAI), were determined by X-ray crystallography. In addition to identifying changes in atomic position we report a method that identifies protein segments having altered flexibility. The method utilizes a statistical analysis of variance to delineate main-chain temperature factors that represent significant departures from the overall variance between equivalent regions seen throughout the structure. This method reveals changes in main-chain mobility in both variants. Residues 125-127 have increased mobility in the RSYSA variant while residues 100-104 have decreased mobility in the DSAI variant. These segments are located at the substrate-binding site and changes in their mobility are believed to relate to the observed changes in proteolytic activity. The effect of altered crystal lattice contacts on segment flexibility becomes apparent when identical variants, determined in two crystal forms, are compared with the native enzyme. Copyright 1999 Academic Press.
机译:通过X射线晶体学测定具有增强的酶活性的慢芽孢杆菌枯草杆菌蛋白酶工程变体的三维结构,K27R / N87S / V104Y / N123S / T274A(RSYSA)和N76D / N87S / S103A / V104I(DSAI)。除了鉴定原子位置的变化以外,我们报告了一种鉴定具有改变的柔性的蛋白质区段的方法。该方法利用方差的统计分析来描绘主链温度因子,该主链温度因子表示与整个结构中看到的等效区域之间的总体方差显着不同。这种方法揭示了两个变体中主链移动性的变化。残基125-127在RSYSA变体中具有增加的迁移率,而残基100-104在DSAI变体中具有降低的迁移率。这些片段位于底物结合位点,其迁移率的变化被认为与蛋白水解活性的变化有关。当将两种晶型中确定的相同变体与天然酶进行比较时,改变晶格接触对节段柔性的影响变得显而易见。版权所有1999,学术出版社。

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