Key Laboratory of Ecology and Environment in Minority Areas (National Ethnic Affairs Commission), College of Life and Environmental Sciences, Minzu University of China, Beijing, China.
State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.
Nat Commun. 2024 Apr 26;15(1):3539. doi: 10.1038/s41467-024-47502-2.
Bergenin, a rare C-glycoside of 4-O-methyl gallic acid with pharmacological properties of antitussive and expectorant, is widely used in clinics to treat chronic tracheitis in China. However, its low abundance in nature and structural specificity hampers the accessibility through traditional crop-based manufacturing or chemical synthesis. In the present work, we elucidate the biosynthetic pathway of bergenin in Ardisia japonica by identifying the highly regio- and/or stereoselective 2-C-glycosyltransferases and 4-O-methyltransferases. Then, in Escherichia coli, we reconstruct the de novo biosynthetic pathway of 4-O-methyl gallic acid 2-C-β-D-glycoside, which is the direct precursor of bergenin and is conveniently esterified into bergenin by in situ acid treatment. Moreover, further metabolic engineering improves the production of bergenin to 1.41 g L in a 3-L bioreactor. Our work provides a foundation for sustainable supply of bergenin and alleviates its resource shortage via a synthetic biology approach.
Bergenin 是一种罕见的 4-O-甲基没食子酸 C-糖苷,具有镇咳和祛痰的药理作用,在中国临床上广泛用于治疗慢性气管炎。然而,其在自然界中的丰度低和结构特异性阻碍了通过传统的基于作物的制造或化学合成获得它。在本工作中,我们通过鉴定高度区域和/或立体选择性的 2-C-糖基转移酶和 4-O-甲基转移酶,阐明了在紫金牛中 Bergenin 的生物合成途径。然后,在大肠杆菌中,我们重建了 4-O-甲基没食子酸 2-C-β-D-糖苷的从头生物合成途径,这是 Bergenin 的直接前体,可以通过原位酸处理方便地酯化生成 Bergenin。此外,进一步的代谢工程将 Bergenin 的产量提高到 3-L 生物反应器中的 1.41 g/L。我们的工作通过合成生物学方法为 Bergenin 的可持续供应提供了基础,并缓解了其资源短缺。