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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Biochemical properties and potential applications of a solvent-stable protease from the high-yield protease producer pseudomonas aeruginosa PT121
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Biochemical properties and potential applications of a solvent-stable protease from the high-yield protease producer pseudomonas aeruginosa PT121

机译:高产蛋白酶生产商铜绿假单胞菌PT121的溶剂稳定蛋白酶的生化特性和潜在应用

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摘要

An organic solvent-stable protease from Pseudomonas aeruginosa PT121 was purified in a single step with 55% recovery by hydrophobic interaction chromatography on a Phenyl Sepharose High Performance matrix. The purified protease was homogenous on SDS-PAGE and had an estimated molecular mass of 33 kDa. The optimal pH and temperature conditions for enzyme activity were 8.0 and 60°C, respectively. The enzyme was classified as a metalloprotease based on its strong inhibition by EDTA and 1,10-phenanthroline and exhibited good stability across a broad pH range (6.0-11.0). The protease was quite stable in the presence of various water-miscible organic solvents. This is a unique property of the protease which makes it an ideal choice for application in aqueous-organic phase organic synthesis including peptides synthesis. The synthetic activity of the protease was tested using N-carbobenzoxy-l-asparagine (Z-Asp) and l-phenylalaninamide (Phe-NH_2) as substrate in the presence of various water-miscible organic solvents for aspartame precursor synthesis. The highest yield was obtained in the presence of 50% DMSO (91%). The synthesis rate in the presence of DMSO was also much higher than the rates in the other tested organic solvents, and the initial rates of Z-Asp-Phe-NH _2 synthesis in mixtures of various water-miscible organic solvents, with the exception of ethanol, correlated with the yields of Z-Asp-Phe-NH _2. Furthermore, the PT121 protease was able to use various carboxyl components (Z-AA) and Phe-NH_2 as substrates to catalyze the syntheses of the dipeptides, indicating that this protease has a broad specificity for carboxylic acid residue.
机译:通过在苯基琼脂糖高效基质上的疏水相互作用色谱法一步纯化纯化铜绿假单胞菌PT121的有机溶剂稳定蛋白酶,回收率为55%。纯化的蛋白酶在SDS-PAGE上是均质的,估计分子量为33 kDa。酶活性的最佳pH和温度条件分别为8.0和60°C。该酶基于其对EDTA和1,10-菲咯啉的强抑制作用,被分类为金属蛋白酶,并且在很宽的pH范围(6.0-11.0)内均表现出良好的稳定性。在各种与水混溶的有机溶剂存在下,蛋白酶非常稳定。这是蛋白酶的独特性质,使其成为用于有机水相有机合成(包括肽合成)的理想选择。在各种水可混溶的有机溶剂存在下,使用N-碳苯甲氧基-1-天冬酰胺(Z-Asp)和1-苯丙氨酰胺(Phe-NH_2)作为底物,测试蛋白酶的合成活性。在50%DMSO(91%)的存在下获得了最高的收率。在存在DMSO的情况下,合成速率也远高于在其他测试过的有机溶剂中的合成速率,以及在各种水混溶性有机溶剂的混合物中Z-Asp-Phe-NH _2的初始合成速率,但乙醇,与Z-Asp-Phe-NH _2的产率相关。此外,PT121蛋白酶能够使用各种羧基成分(Z-AA)和Phe-NH_2作为底物来催化二肽的合成,这表明该蛋白酶对羧酸残基具有广泛的特异性。

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