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Eukaryotic Expression System Pichia pastoris Affects the Lipase Catalytic Properties: A Monolayer Study

机译:真核表达系统巴斯德毕赤酵母影响脂肪酶的催化性能:单层研究。

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摘要

Recombinant DNA methods are being widely used to express proteins in both prokaryotic and eukaryotic cells for both fundamental and applied research purposes. Expressed protein must be well characterized to be sure that it retains the same properties as the native one, especially when expressed protein will be used in the pharmaceutical field. In this aim, interfacial and kinetic properties of native, untagged recombinant and tagged recombinant forms of a pancreatic lipase were compared using the monomolecular film technique. Turkey pancreatic lipase (TPL) was chosen as model. A kinetic study on the dependence of the stereoselectivity of these three forms on the surface pressure was performed using three dicaprin isomers spread in the form of monomolecular films at the air-water interface. The heterologous expression and the N-His-tag extension were found to modify the pressure preference and decrease the catalytic hydrolysis rate of three dicaprin isomers. Besides, the heterologous expression was found to change the TPL regioselectivity without affecting its stereospecificity contrary to the N-tag extension which retained that regioselectivity and changed the stereospecificity at high surface pressures. The study of parameters, termed Recombinant expression Effects on Catalysis (REC), N-Tag Effects on Catalysis (TEC), and N-Tag and Recombinant expression Effects on Catalysis (TREC) showed that the heterologous expression effects on the catalytic properties of the TPL were more deleterious than the presence of an N-terminal tag extension.
机译:重组DNA方法被广泛用于在原核和真核细胞中表达蛋白质,以用于基础研究和应用研究。表达的蛋白质必须经过充分表征,以确保其保留与天然蛋白质相同的特性,尤其是当表达的蛋白质将用于制药领域时。为此,使用单分子膜技术比较了胰腺脂肪酶的天然,无标签重组和标签重组形式的界面和动力学特性。选择土耳其胰脂肪酶(TPL)作为模型。使用在空气-水界面以单分子膜形式散布的三种二癸精异构体,对这三种形式的立体选择性与表面压力的依赖性进行了动力学研究。发现异源表达和N-His-tag延伸可改变压力偏好并降低三种二癸精异构体的催化水解速率。此外,发现异源表达改变TPL区域选择性而不影响其立体特异性,这与保留了区域选择性并在高表面压力下改变立体特异性的N标签延伸相反。对参数的重组表达影响催化(REC),N-Tag催化作用(TEC)以及N-Tag和重组表达对催化作用(TREC)的研究表明,异源表达对催化活性的影响。 TPL比存在N末端标签扩展名更具危害性。

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