Qiu Zetian, Liu Xiaohui, Yu Jie, Zhao Yushuo, Zhao Guang-Rong, Li Shengying, Liu Kun, Du Lei, Ma Li
State Key Laboratory of Microbial Technology, Shandong University, Qingdao, Shandong, 266237, China.
Frontier Science Center for Synthetic Biology and Key Laboratory of Systems Bioengineering (Ministry of Education), School of Chemical Engineering and Technology, Tianjin University, Yaguan Road 135, Jinnan District, Tianjin, 300350, China.
Synth Syst Biotechnol. 2024 Feb 5;9(2):187-195. doi: 10.1016/j.synbio.2024.01.008. eCollection 2024 Jun.
Benzyl and phenylpropanoid acids are widely used in organic synthesis of fine chemicals, such as pharmaceuticals and condiments. However, biocatalysis of these acids has received less attention than chemical synthesis. One of the main challenges for biological production is the limited availability of alcohol dehydrogenases and aldehyde dehydrogenases. Environmental microorganisms are potential sources of these enzymes. In this study, 129 alcohol dehydrogenases and 42 aldehyde dehydrogenases from , , and were identified and explored with various benzyl and phenylpropanoid alcohol and aldehyde substrates, among which four alcohol dehydrogenases and four aldehyde dehydrogenases with broad substrate specificity and high catalytic activity were obtained. Moreover, a cascade whole-cell catalytic system including ADH-90, ALDH-40, and the NAD(P)H oxidase LreNox was established, which showed high efficiency in converting cinnamyl alcohol and -methylbenzyl alcohol into the respective carboxylic acids. Remarkably, this biocatalytic system can be easily scaled up to gram-level production, facilitating preparation purposes.
苄基酸和苯丙烷类酸广泛应用于精细化学品的有机合成,如药物和调味品。然而,与化学合成相比,这些酸的生物催化受到的关注较少。生物生产的主要挑战之一是醇脱氢酶和醛脱氢酶的可用性有限。环境微生物是这些酶的潜在来源。在本研究中,从[具体来源未给出]中鉴定并探索了129种醇脱氢酶和42种醛脱氢酶,使用了各种苄基和苯丙烷类醇及醛底物,其中获得了四种具有广泛底物特异性和高催化活性的醇脱氢酶和四种醛脱氢酶。此外,建立了一个包括ADH-90、ALDH-40和NAD(P)H氧化酶LreNox的级联全细胞催化系统,该系统在将肉桂醇和α-甲基苄醇转化为相应的羧酸方面表现出高效率。值得注意的是,这种生物催化系统可以很容易地扩大到克级生产,便于制备目的。