Identification and characterization of two Isatis indigotica O-methyltransferases methylating C-glycosylflavonoids

Author:

Tan Yuping12,Yang Jian1,Jiang Yinyin1,Sun Shufu13,Wei Xiaoyan14,Wang Ruishan1,Bu Junling1,Li Dayong5,Kang Liping1,Chen Tong1,Guo Juan1,Cui Guanghong1,Tang Jinfu1,Huang Luqi12

Affiliation:

1. China Academy of Chinese Medical Sciences State Key Laboratory of Dao-di Herbs, National Resource Center for Chinese Materia Medica, , Beijing 100700, China

2. Shenyang Pharmaceutical University School of Traditional Chinese Medicine, , Shenyang 117004, China

3. Anhui University of Chinese Medicine School of Pharmacy, , Hefei 230012, China

4. Jilin Agricultural University College of Chinese Medicinal Materials, , Changchun 130118, China

5. National Engineering Research Center for Vegetables, Beijing Vegetable Research Center , Beijing Academy of Agriculture and Forestry Science, Beijing 100097, China

Abstract

Abstract Isatis indigotica accumulates several active substances, including C-glycosylflavonoids, which have important pharmacological activities and health benefits. However, enzymes catalyzing the methylation step of C-glycosylflavonoids in I. indigotica remain unknown. In this study, three O-methyltransferases (OMTs) were identified from I. indigotica that have the capacity for O-methylation of the C-glycosylflavonoid isoorientin. The Type II OMTs IiOMT1 and IiOMT2 efficiently catalyze isoorientin to form isoscoparin, and decorate one of the aromatic vicinal hydroxyl groups on flavones and methylate the C6, C8, and 3′-hydroxyl positions to form oroxylin A, wogonin, and chrysoeriol, respectively. However, the Type I OMT IiOMT3 exhibited broader substrate promiscuity and methylated the C7 and 3′-hydroxyl positions of flavonoids. Further site-directed mutagenesis studies demonstrated that five amino acids of IiOMT1/IiOMT2 (D121/D100, D173/D149, A174/A150R, N200/N176, and D248/D233) were critical residues for their catalytic activity. Additionally, only transient overexpression of Type II OMTs IiOMT1 and IiOMT2 in Nicotiana benthamiana significantly increased isoscoparin accumulation, indicating that the Type II OMTs IiOMT1 and IiOMT2 could catalyze the methylation step of C-glycosylflavonoid, isoorientin at the 3′-hydroxyl position. This study provides insights into the biosynthesis of methylated C-glycosylflavonoids, and IiOMTs could be promising catalysts in the synthesis of bioactive compounds.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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