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通过偶联酶反应将外消旋非天然氨基酸转化为光学纯形式。

Conversion of Racemic Unnatural Amino Acids to Optically Pure Forms by a Coupled Enzymatic Reaction.

机构信息

Department of Chemistry, Sogang University, 35 Baekbeomro Mapogu, Seoul 121-742, Korea.

出版信息

Molecules. 2021 Feb 26;26(5):1274. doi: 10.3390/molecules26051274.

Abstract

Genetic code expansion (GCE) technology is a useful tool for the site-specific modification of proteins. An unnatural amino acid (UAA) is one of the essential components of this technique, typically required at high concentration (1 mM or higher) in growth medium. The supply of UAAs is an important limitation to the application of GCE technology, as many UAAs are either expansive or commercially unavailable. In this study, two UAAs in a racemic mixture were converted into optically pure forms using two enzymes, the d-amino acid oxidase (RgDAAO) from and the aminotransferase (TtAT) from . In the coupled enzyme system, RgDAAO oxidizes the d-form of UAAs in a stereospecific manner and produces the corresponding α-keto acids, which are then converted into the l-form of UAAs by TtAT, resulting in the quantitative and stereospecific conversion of racemic UAAs to optically pure forms. The genetic incorporation of the optically pure UAAs into a target protein produced a better protein yield than the same experiments using the racemic mixtures of the UAAs. This method could not only be used for the preparation of optically pure UAAs from racemic mixtures, but also the broad substrate specificity of both enzymes would allow for its expansion to structurally diverse UAAs.

摘要

遗传密码扩展 (GCE) 技术是一种用于蛋白质定点修饰的有用工具。非天然氨基酸 (UAA) 是该技术的重要组成部分之一,通常在生长培养基中需要高浓度 (1mM 或更高)。UAA 的供应是 GCE 技术应用的一个重要限制,因为许多 UAA 要么昂贵,要么难以获得。在这项研究中,使用两种酶将外消旋混合物中的两种 UAA 转化为光学纯形式,这两种酶是来自 的 D-氨基酸氧化酶 (RgDAAO) 和来自 的氨基转移酶 (TtAT)。在偶联酶系统中,RgDAAO 以立体特异性的方式氧化 D 型 UAA,产生相应的 α-酮酸,然后 TtAT 将其转化为 L 型 UAA,从而实现外消旋 UAA 的定量和立体特异性转化为光学纯形式。将光学纯 UAA 遗传掺入目标蛋白中产生的蛋白质产量优于使用 UAA 外消旋混合物进行的相同实验。该方法不仅可用于从外消旋混合物中制备光学纯 UAA,而且两种酶的广泛底物特异性还可将其扩展到结构多样的 UAA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfa0/7956486/53dbcc8ed275/molecules-26-01274-g001.jpg

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