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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Mutations Closer to the Active Site Improve the Promiscuous Aldolase Activity of 4-Oxalocrotonate Tautomerase More Effectively than Distant Mutations
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Mutations Closer to the Active Site Improve the Promiscuous Aldolase Activity of 4-Oxalocrotonate Tautomerase More Effectively than Distant Mutations

机译:接近活性位点的突变比远端突变更有效地提高4-氧代巴豆酸互变异构酶的混杂醛缩酶活性

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摘要

The enzyme 4-oxalocrotonate tautomerase (4-OT), which catalyzes enol-keto tautomerization as part of a degradative pathway for aromatic hydrocarbons, promiscuously catalyzes various carbon-carbon bond-forming reactions. These include the aldol condensation of acetaldehyde with benzaldehyde to yield cinnamaldehyde. Here, we demonstrate that 4-OT can be engineered into a more efficient aldolase for this condensation reaction, with a >5000-fold improvement in catalytic efficiency (k(cat)/K-m) and a >10(7)-fold change in reaction specificity, by exploring small libraries in which only hotspots are varied. The hotspots were identified by systematic mutagenesis (covering each residue), followed by a screen for single mutations that give a strong improvement in the desired aldolase activity. All beneficial mutations were near the active site of 4-OT, thus underpinning the notion that new catalytic activities of a promiscuous enzyme are more effectively enhanced by mutations close to the active site.
机译:4-草酰巴豆酸酯互变异构酶(4-OT)催化烯醇-酮互变异构反应,这是芳香烃降解途径的一部分,混杂催化各种碳-碳键形成反应。这些包括乙醛与苯甲醛的醛醇缩合以产生肉桂醛。在这里,我们证明了可以将4-OT设计成一种更有效的醛缩酶,用于这种缩合反应,催化效率(k(cat)/ Km)的提高> 5000倍,并且在催化反应中的变化> 10(7)倍。通过探索只有热点可变的小型文库来确定反应的特异性。通过系统诱变(覆盖每个残基)识别热点,然后筛选单个突变,从而显着提高所需醛缩酶活性。所有有益的突变都靠近4-OT的活性位点,因此支持了一个观念,即接近活性位点的突变可以更有效地增强混杂酶的新催化活性。

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