Wu Peiling, Luo Ding, Wang Yuezhou, Shang Xiaoxu, Wang Binju, Deng Xianming, Yuan Jifeng
State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Faculty of Medicine and Life Sciences, Xiamen University, Fujian 361102, China.
College of Chemistry and Chemical Engineering, Xiamen University, Fujian 361105, China.
Biodes Res. 2024 Sep 3;6:0048. doi: 10.34133/bdr.0048. eCollection 2024.
Ephedra-type alkaloids represent a large class of natural and synthetic phenylpropanolamine molecules with great pharmaceutical values. However, the existing methods typically rely on chemical approaches to diversify the -group modification of Ephedra-type alkaloids. Herein, we report a 2-step enzymatic assembly line for creating structurally diverse Ephedra-type alkaloids to replace the conventional chemical modification steps. We first identified a new carboligase from (AlsS, acetolactate synthase) as a robust catalyst to yield different phenylacetylcarbinol (PAC) analogs from diverse aromatic aldehydes with near 100% conversions. Subsequently, we screened imine reductases (IREDs) for the reductive amination of PAC analogs. It was found that IRG02 from had good activities with conversions ranging from 37% to 84% for the reductive alkylamination with diverse amine partners such as allylamine, propargylamine, and cyclopropylamine. Overall, 3 new bio-modifications at the -group of Ephedra-type alkaloids were established. Taken together, our work lays a foundation for the future implementation of biocatalysis for synthesizing structurally diverse Ephedra-type alkaloids with potential new pharmaceutical applications.
麻黄属型生物碱是一类具有重要药用价值的天然和合成苯丙醇胺分子。然而,现有方法通常依赖化学方法来实现麻黄属型生物碱的β-基团修饰多样化。在此,我们报道了一种两步酶促组装线,用于创建结构多样的麻黄属型生物碱,以取代传统的化学修饰步骤。我们首先从枯草芽孢杆菌中鉴定出一种新的羧化酶(AlsS,乙酰乳酸合酶),它是一种强大的催化剂,能以近100%的转化率从多种芳香醛生成不同的苯乙酰甲醇(PAC)类似物。随后,我们筛选了用于PAC类似物还原胺化的亚胺还原酶(IREDs)。结果发现,来自嗜热栖热菌的IRG02对与多种胺类底物(如烯丙胺、炔丙胺和环丙胺)进行还原烷基化反应具有良好活性,转化率在37%至84%之间。总体而言,在麻黄属型生物碱的β-基团上建立了3种新的生物修饰方法。综上所述,我们的工作为未来实施生物催化合成具有潜在新药用应用的结构多样的麻黄属型生物碱奠定了基础。