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Construction of Aspergillus niger lipase mutants with oil-water interface independence

机译:具有油水界面独立性的黑曲霉脂肪酶突变体的构建

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Based on previous bioinformational analytical results [Shu ZY, et al. Biotechnol Prog 2009;25:409-16], four A niger lipase (ANL) mutants, ANL-Ser84Gly, ANL-Asp99Pro, ANL-Lys108Glu and ANL-EaH (obtained by replacing the lid domain of ANL with the corresponding domain from A. niger feruloyl esterase), were constructed to screen out ANL mutants with oil-water interface independence. ANL-S84G displayed a pronounced interfacial activation, while ANL-D99P and ANL-K108E displayed no interfacial activation. The specific activity of ANL-S84G towards p-nitrophenyl esters decreased from 29.8% to 76.5% compared with that of ANL, while the specific activity of ANL-D99P towards p-nitrophenyl palmitate increased 2.2-fold. The thermostability of ANL-K108E was almost unchanged, while the thermostability of ANL-S84G and ANL-D99P significantly decreased compared with that of ANL. The construction of oil-water interface-independent ANLmutants would help to further understand the mechanism of lipase interfacial activation.
机译:基于以前的生物信息学分析结果[Shu ZY等。 Biotechnol Prog 2009; 25:409-16],四个A黑曲霉脂肪酶(ANL)突变体,ANL-Ser84Gly,ANL-Asp99Pro,ANL-Lys108Glu和ANL-EaH(通过将ANL的有盖结构域替换为A的相应结构域获得构,以筛选出具有油水界面独立性的ANL突变体。 ANL-S84G显示出明显的界面激活,而ANL-D99P和ANL-K108E没有显示出界面激活。与ANL相比,ANL-S84G对对硝基苯基酯的比活性从29.8%降至76.5%,而ANL-D99P对对硝基苯基棕榈酸酯的比活性提高了2.2倍。 ANL-K108E的热稳定性几乎没有变化,而ANL-S84G和ANL-D99P的热稳定性则比ANL显着降低。油水界面无关的ANL突变体的构建将有助于进一步了解脂肪酶界面活化的机制。

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