College of Life Sciences, Northwest University, 229 North Taibai Road, Xi'an, Shaanxi, 710069, China.
College of Life Sciences, Northwest University, 229 North Taibai Road, Xi'an, Shaanxi, 710069, China.
Arch Biochem Biophys. 2024 Apr;754:109962. doi: 10.1016/j.abb.2024.109962. Epub 2024 Mar 16.
Acetohydroxyacid synthase (AHAS) is one of the key enzymes of the biosynthesis of branched-chain amino acids, it is also an effective target for the screening of herbicides and antibiotics. In this study we present a method for preparing Escherichia coli AHAS I holoenzyme (EcAHAS I) with exceptional stability, which provides a solid ground for us to re-investigate the in vitro catalytic properties of the protein. The results show EcAHAS I synthesized in this way exhibits similar function to Bacillus subtilis acetolactate synthase in its catalysis with pyruvate and 2-ketobutyrate (2-KB) as dual-substrate, producing four 2-hydroxy-3-ketoacids including (S)-2-acetolactate, (S)-2-aceto-2-hydroxybutyrate, (S)-2-propionyllactate, and (S)-2-propionyl-2-hydroxybutyrate. Quantification of the reaction indicates that the two substrates almost totally consume, and compound (S)-2-aceto-2- hydroxybutyrate forms in the highest yield among the four major products. Moreover, the protein also condenses two molecules of 2-KB to furnish (S)-2-propionyl-2-hydroxybutyrate. Further exploration manifests that EcAHAS I ligates pyruvate/2-KB and nitrosobenzene to generate two arylhydroxamic acids N-hydroxy-N-phenylacetamide and N-hydroxy-N-phenyl- propionamide. These findings enhance our comprehension of the catalytic characteristics of EcAHAS I. Furthermore, the application of this enzyme as a catalyst in construction of C-N bonds displays promising potential.
乙酰羟酸合酶(AHAS)是支链氨基酸生物合成的关键酶之一,也是筛选除草剂和抗生素的有效靶点。本研究提出了一种制备具有优异稳定性的大肠杆菌 AHAS I 全酶(EcAHAS I)的方法,为我们重新研究该蛋白的体外催化特性提供了坚实的基础。结果表明,以这种方式合成的 EcAHAS I 在以丙酮酸和 2-酮丁酸(2-KB)为双底物的催化中表现出与枯草芽孢杆菌乙酰乳酸合酶相似的功能,生成包括(S)-2-乙酰乳酸、(S)-2-乙酰-2-羟基丁酸、(S)-2-丙酰乳酸和(S)-2-丙酰-2-羟基丁酸在内的四种 2-羟基-3-酮酸。反应的定量表明,两种底物几乎完全消耗,并且在四种主要产物中,(S)-2-乙酰-2-羟基丁酸的形成产量最高。此外,该蛋白还缩合 2-KB 的两个分子生成(S)-2-丙酰-2-羟基丁酸。进一步的探索表明,EcAHAS I 连接丙酮酸/2-KB 和亚硝基苯生成两种芳基羟肟酸 N-羟基-N-苯基乙酰胺和 N-羟基-N-苯基丙酰胺。这些发现增强了我们对 EcAHAS I 催化特性的理解。此外,该酶作为构建 C-N 键的催化剂的应用具有广阔的应用前景。