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Establishment of mesophilic-like catalytic properties in a thermophilic enzyme without affecting its thermal stability

机译:在不影响其热稳定性的嗜热酶中建立类似嗜温的催化特性

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摘要

Thermophilic enzymes are generally more thermally stable but are less active at moderate temperatures than are their mesophilic counterparts. Thermophilic enzymes with improved low-temperature activity that retain their high stability would serve as useful tools for industrial processes especially when robust biocatalysts are required. Here we show an effective way to explore amino acid substitutions that enhance the low-temperature catalytic activity of a thermophilic enzyme, based on a pairwise sequence comparison of thermophilic/mesophilic enzymes. One or a combination of amino acid(s) in 3-isopropylmalate dehydrogenase from the extreme thermophile Thermus thermophilus was/were substituted by a residue(s) found in the Escherichia coli enzyme at the same position(s). The best mutant, which contained three amino acid substitutions, showed a 17-fold higher specific activity at 25 °C compared to the original wild-type enzyme while retaining high thermal stability. The kinetic and thermodynamic parameters of the mutant showed similar patterns along the reaction coordinate to those of the mesophilic enzyme. We also analyzed the residues at the substitution sites from a structural and phylogenetic point of view.
机译:嗜热酶通常比中温对应物更热稳定,但在中等温度下活性较低。具有改善的低温活性并保持其高稳定性的嗜热酶将用作工业过程的有用工具,尤其是在需要坚固的生物催化剂时。在这里,我们显示了一种基于嗜热/嗜温酶的成对序列比较,探索增强嗜热酶的低温催化活性的氨基酸取代的有效方法。来自嗜热嗜热菌的3-异丙基苹果酸脱氢酶中的一种或多种氨基酸被在大肠杆菌酶中相同位置上发现的一个或多个残基取代。含有三个氨基酸取代的最佳突变体在25°C时比原始野生型酶高出17倍的比活性,同时保持了高的热稳定性。突变体的动力学和热力学参数沿反应坐标显示出与嗜温酶相似的模式。我们还从结构和系统发育的角度分析了置换位点的残基。

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