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首页> 外文期刊>Molecules >The Role of Solvent-Accessible Leu-208 of Cold-Active Pseudomonas fluorescens Strain AMS8 Lipase in Interfacial Activation, Substrate Accessibility and Low-Molecular Weight Esterification in the Presence of Toluene
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The Role of Solvent-Accessible Leu-208 of Cold-Active Pseudomonas fluorescens Strain AMS8 Lipase in Interfacial Activation, Substrate Accessibility and Low-Molecular Weight Esterification in the Presence of Toluene

机译:在甲苯存在下,冷活性荧光假单胞菌菌株AMS8脂肪酶的溶剂可及性Leu-208在界面活化,底物可及性和低分子量酯化中的作用

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The alkaline cold-active lipase from Pseudomonas fluorescens AMS8 undergoes major structural changes when reacted with hydrophobic organic solvents. In toluene, the AMS8 lipase catalytic region is exposed by the moving hydrophobic lid 2 (Glu-148 to Gly-167). Solvent-accessible surface area analysis revealed that Leu-208, which is located next to the nucleophilic Ser-207 has a focal function in influencing substrate accessibility and flexibility of the catalytic pocket. Based on molecular dynamic simulations, it was found that Leu-208 strongly facilitates the lid 2 opening via its side-chain. The KM and Kcat/KM of L208A mutant were substrate dependent as it preferred a smaller-chain ester (pNP-caprylate) as compared to medium (pNP-laurate) or long-chain (pNP-palmitate) esters. In esterification of ethyl hexanoate, L208A promotes a higher ester conversion rate at 20 °C but not at 30 °C, as a 27% decline was observed. Interestingly, the wild-type (WT) lipase’s conversion rate was found to increase with a higher temperature. WT lipase AMS8 esterification was higher in toluene as compared to L208A. Hence, the results showed that Leu-208 of AMS8 lipase plays an important role in steering a broad range of substrates into its active site region by regulating the flexibility of this region. Leu-208 is therefore predicted to be crucial for its role in interfacial activation and catalysis in toluene. View Full-Text
机译:荧光假单胞菌AMS8的碱性冷活性脂肪酶与疏水性有机溶剂反应后,结构发生重大变化。在甲苯中,AMS8脂肪酶催化区域被移动的疏水盖2(Glu-148至Gly-167)暴露。溶剂可及的表面积分析表明,位于亲核性Ser-207旁边的Leu-208在影响底物可及性和催化口袋的柔性方面具有聚焦作用。基于分子动力学模拟,发现Leu-208通过其侧链极大地促进了盖子2的打开。 L208A突变体的KM和Kcat / KM与底物有关,因为与中型(pNP月桂酸酯)或长链(pNP-棕榈酸酯)酯相比,L208A突变体优选较小链的酯(pNP-辛酸酯)。在己酸乙酯的酯化反应中,L208A在20°C而不是30°C时促进较高的酯转化率,因为观察到下降了27%。有趣的是,发现野生型(WT)脂肪酶的转化率随着温度的升高而增加。与L208A相比,WT脂肪酶AMS8在甲苯中的酯化程度更高。因此,结果表明,AMS8脂肪酶的Leu-208通过调节该区域的柔韧性,在将各种底物引入其活性位点区域中起着重要作用。因此,预计Leu-208对其在甲苯中的界面活化和催化中的作用至关重要。查看全文

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