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通过对L-氨基酸连接酶进行诱变有效生产脯氨酰甘氨酸

Effective production of Pro-Gly by mutagenesis of l-amino acid ligase.

作者信息

Kino Haruka, Nakajima Shota, Arai Toshinobu, Kino Kuniki

机构信息

Department of Applied Chemistry, Faculty of Science and Engineering, Waseda University, 3-4-1 Ohkubo, Shinjuku-ku, Tokyo 169-8555, Japan; Technical Research Institute R&D Center, T. Hasegawa Co., Ltd., 29-7 Kariyado, Nakahara-ku, Kawasaki-shi, Kanagawa 211-0022, Japan.

Department of Applied Chemistry, Faculty of Science and Engineering, Waseda University, 3-4-1 Ohkubo, Shinjuku-ku, Tokyo 169-8555, Japan.

出版信息

J Biosci Bioeng. 2016 Aug;122(2):155-9. doi: 10.1016/j.jbiosc.2016.01.014. Epub 2016 Mar 24.

Abstract

l-Amino acid ligase (Lal) catalyzes dipeptide synthesis from unprotected l-amino acids by hydrolysis ATP to ADP. Each Lal displays unique substrate specificity, and many different dipeptides can be synthesized by selecting suitable Lal. We have already successfully synthesized Met-Gly selectively by replacing the Pro85 residues of Lal from Bacillus licheniformis (BL00235). From these results, we deduced that the amino acid residue at position 85 had a key role in enzyme activity, and applied these findings to other Lals. When Pro and Gly were used as substrates, TabS from Pseudomonas syringae, synthesized the salt taste enhancing dipeptide Pro-Gly and other three dipeptides (Gly-Pro, Pro-Pro, and Gly-Gly) was hardly synthesized from its substrate specificity. However, the amount of Pro-Gly was low. Therefore, to alter the substrate specificity and increase the amount of Pro-Gly, we selected amino acid residues that might affect the enzyme activity, Ser85 corresponding to Pro85 of BL00235, and His294 on the results from previous studies and the predicted structure of TabS. These residues were replaced with 20 proteogenic amino acids, and Pro-Gly synthesizing reactions were conducted. The S85T and the H294D mutants synthesized more Pro-Gly than wild-type. Furthermore, the S85T/H294D double mutant synthesized considerably more Pro-Gly than the single mutant did. These results showed that the amino acid position 85 of TabS affect the enzyme activity similarly to BL00235. In addition, replacing the amino acid residue positioning around the N-terminal substrate and constructing the double mutant led to increase the amount of Pro-Gly.

摘要

L-氨基酸连接酶(Lal)通过将ATP水解为ADP,催化由未受保护的L-氨基酸合成二肽。每种Lal都表现出独特的底物特异性,通过选择合适的Lal可以合成许多不同的二肽。我们已经通过替换地衣芽孢杆菌(BL00235)的Lal的Pro85残基成功选择性地合成了Met-Gly。从这些结果中,我们推断85位的氨基酸残基在酶活性中起关键作用,并将这些发现应用于其他Lal。当使用Pro和Gly作为底物时,丁香假单胞菌的TabS合成了增强盐味的二肽Pro-Gly,而根据其底物特异性几乎不合成其他三种二肽(Gly-Pro、Pro-Pro和Gly-Gly)。然而,Pro-Gly的产量较低。因此,为了改变底物特异性并增加Pro-Gly的产量,我们根据先前的研究结果和TabS的预测结构,选择了可能影响酶活性的氨基酸残基,即与BL00235的Pro85对应的Ser85和His294。用20种蛋白质氨基酸替换这些残基,并进行Pro-Gly合成反应。S85T和H294D突变体合成的Pro-Gly比野生型更多。此外,S85T/H294D双突变体合成的Pro-Gly比单突变体多得多。这些结果表明,TabS的85位氨基酸对酶活性的影响与BL00235类似。此外,替换N端底物周围的氨基酸残基并构建双突变体导致Pro-Gly产量增加。

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