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Maximization of Production of His-Tagged Glycine Oxidase and Its M261 Mutant Proteins

机译:组氨酸标记的甘氨酸氧化酶及其M261突变蛋白的产量最大化

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Glycine oxidase (GOX)from Bacillus subtilis is a new flavoprotein of great potential biotechnological use that catalizes the oxidative deamination of various amines (glycine,sarcosine,and N-ethyl-glycine)and D-amino acids (D-alanine and D-proline).However,its commercial application is hindered by its low heterologous expression in Escherichia coll due to its codon bias and the sensitivity of its N-terminus to proteases.The first problem has been solved by cloning the GOX gene from B.subtilis ATCC 6633 into the Rosetta E.coli strain,which contains the pRARE plasmid.The second problem was overcome by inserting the gene in the pET28a expression vector,which not only has a 6xHis tag but also increases the N-terminus in 36 amino acids without impairing either the enzymatic activity or the ribosome binding region.After induction with 0.5 mM isopropyl thio-beta-D-galactoside for 5 h in TB-medium,the soluble and active chimeric GOX was expressed up to 15.81 U centre dot g~(-1)cell,with a fermentation yield of 399 U centre dot L~(-1).The latter value represents about 16% of the total soluble protein content of the cell.The three latter values are higher than the best found in the literature by 16-,28-and 4-fold,respectively.The enzyme was purified with a nickel HiTrap chelating-affinity column in 96% yield to apparent homogeneity.It was fully active and was stable for months at -80 deg C in the presence of 10% glycerol.Its substrate specificity was similar to that previously described,but the constructed M261 mutants unexpectedly decreased in K_M compared with the wild-type,especially in the M261Y mutant.Noteworthy,there was decrease in the K_M for N-ethyl-glycine of up to 0.7 mM,similar to that found with N-alkyl-glycine oxidase.Such mutants open up new possible uses of this enzyme not only in the pharmacological industry but also in the clinical field for diabetic complications.
机译:枯草芽孢杆菌中的甘氨酸氧化酶(GOX)是一种具有重大生物技术用途的新型黄素蛋白,可催化各种胺(甘氨酸,肌氨酸和N-乙基甘氨酸)和D-氨基酸(D-丙氨酸和D-脯氨酸)的氧化脱氨反应然而,由于其密码子偏性及其N末端对蛋白酶的敏感性,其在大肠杆菌中的低异源表达受到阻碍。其第一个问题已通过从枯草芽孢杆菌ATCC 6633克隆GOX基因得以解决。将第二个问题通过在pET28a表达载体中插入该基因得以克服,该问题不仅具有6xHis标签,而且还可以增加36个氨基酸的N末端而不损害任何一个,从而解决了第二个问题。在TB培养基中用0.5 mM异丙基硫代β-D-D-半乳糖苷诱导5 h后,可溶性和活性嵌合GOX表达达到15.81 U中心点g〜(-1)。牢房399 U中心点L〜(-1)的产率。后一个值约占细胞总可溶性蛋白含量的16%,后三个值比文献中的最佳值高16-,28-该酶分别用HiTrap镍螯合亲和力镍柱纯化,收率为96%,具有明显的均一性。它具有充分的活性,在10%的甘油存在下于-80℃稳定数月。底物特异性与先前描述的相似,但是与野生型相比,构建的M261突变体在K_M中出乎意料地降低,尤其是在M261Y突变体中。值得注意的是,对于N-乙基甘氨酸,K_M降低了0.7 mM类似于N-烷基-甘氨酸氧化酶。这种突变体不仅在药理学行业,而且在糖尿病并发症的临床领域都为这种酶开辟了新的可能用途。

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