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Improving the Activity and Stability of GL-7-ACA Acylase CA130 by Site-Directed Mutagenesis

机译:通过定点诱变提高GL-7-ACA酰基转移酶CA130的活性和稳定性

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In the present study, glutaryl-7-amino cephalosporanic acid acylase from Pseudomonas sp. strain 130 (CA130) was mutated to improve its enzymatic activity and stability. Based on the crystal structure of CA130, two series of amino acid residues, one from those directly involved in catalytic function and another from those putatively involved in surface charge, were selected as targets for site-directed mutagenesis. In the first series of experiments, several key residues in the substrate-binding pocket were substituted, and the genes were expressed in Escherichia coli for activity screening. Two of the mutants constructed, Y151αF and Q50βN, showed two- to threefold-increased catalytic efficiency (kcat/Km) compared to wild-type CA130. Their Km values were decreased by ca. 50%, and the kcat values increased to 14.4 and 16.9 s?1, respectively. The ability of these mutants to hydrolyze adipoyl 6-amino penicillinic acid was also improved. In the second series of mutagenesis, several mutants with enhanced stabilities were identified. Among them, R121βA and K198βA had a 30 to 58% longer half-life than wild-type CA130, and K198βA and D286βA showed an alkaline shift of optimal pH by about 1.0 to 2.0 pH units. To construct an engineered enzyme with the properties of both increased activity and stability, the double mutant Q50βN/K198βA was expressed. This enzyme was purified and immobilized for catalytic analysis. The immobilized mutant enzyme showed a 34.2% increase in specific activity compared to the immobilized wild-type CA130.
机译:在本研究中,来自假单胞菌属(Pseudomonas sp。)的戊二酰-7-氨基头孢烷酸酰基转移酶。菌株130(CA130)被突变以提高其酶活性和稳定性。根据CA130的晶体结构,选择了两个系列的氨基酸残基,一个是直接参与催化功能的氨基酸残基,另一个是假定地涉及表面电荷的氨基酸残基,作为定点诱变的靶标。在第一个系列实验中,取代了底物结合袋中的几个关键残基,并在大肠杆菌中表达了该基因以进行活性筛选。与野生型CA130相比,构建的两个突变体Y151αF和Q50βN表现出两倍至三倍的催化效率(kcat / Km)。它们的Km值降低了约50%,kcat值分别增加到14.4和16.9 s?1。这些突变体水解己二酰基6-氨基青霉酸的能力也得到了改善。在第二系列诱变中,鉴定了具有增强的稳定性的几个突变体。其中,R121βA和K198βA的半衰期比野生型CA130长30%至58%,而K198βA和D286βA的最佳pH值发生了约1.0至2.0 pH单位的碱性变化。为了构建具有增加的活性和稳定性的特性的工程酶,表达了双突变体Q50βN/K198βA。将该酶纯化并固定用于催化分析。与固定的野生型CA130相比,固定的突变型酶显示出比活性提高34.2%。

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