Microbial transformation of ginsenoside Rg3 to ginsenoside Rh2 by Esteya vermicola CNU 120806

被引:0
|
作者
Jingang Hou
Jianjie Xue
Chunyan Wang
Lei Liu
Dongliang Zhang
Zhen Wang
Wei Li
Yinan Zheng
Changkeun Sung
机构
[1] Chungnam National University,Department of Food Science and Technology, College of Agriculture and Biotechnology
[2] Jilin Agricultural University,College of Chinese Medicinal Material
关键词
Ginsenoside Rg; Ginsenoside Rh; CNU 120806; Biotransformation;
D O I
暂无
中图分类号
学科分类号
摘要
In the present investigation, we successfully employed a cell-free extract of Esteya vermicola CNU 120806 to convert ginsenoside Rg3 to Rh2. Three important factors including pH, temperature and substrate concentration were optimized for the preparation of Rh2. The optimal condition was obtained as follows: 50°C, pH 5.0 and substrate concentration of 3 mg ml−1. The yield of conversion was up to 90.7%. In order to identify the specificity of the β-glucosidase activity of Esteya vermicola CNU 120806, ginsenoside Re (protopanaxatriol saponins) was treated under the same reaction system. Interestingly, no new metabolite was generated, which elucidated that the enzymatic process only occurred by hydrolysis of the terminal glucopyranosyl moieties at the C-3 carbon of ginsenoside Rg3. The crude enzyme extract can be used for commercial ginsenoside Rh2 preparation.
引用
收藏
页码:1807 / 1811
页数:4
相关论文
共 50 条
  • [21] Identification of cellular targets for ginsenoside Rh2
    Wang, Yu-Shi
    Jin, Ying-Hua
    Lin, Yingjia
    Li, He
    CANCER SCIENCE, 2018, 109 : 365 - 365
  • [22] Generation and Characterization of Monoclonal Antibody to Ginsenoside Rg3
    Joo, Eun Ji
    Ha, Young Wan
    Shin, Heungsop
    Son, Sung Ho
    Kim, Yeong Shik
    BIOLOGICAL & PHARMACEUTICAL BULLETIN, 2009, 32 (04) : 548 - 552
  • [23] Stereospecificity of ginsenoside Rg3 action on ion channels
    Jeong, SM
    Lee, JH
    Kim, JH
    Lee, BH
    Yoon, IS
    Lee, JH
    Kim, DH
    Rhim, H
    Kim, Y
    Nah, SY
    MOLECULES AND CELLS, 2004, 18 (03) : 383 - 389
  • [24] Raman spectroscopy study on the structure of ginsenoside Rg3
    Qu Xiao-bo
    Zhao Yu
    Song Yan
    Zhang Wei
    Zhao Bing
    Li Yu-xin
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2008, 28 (03) : 569 - 571
  • [25] Elicitors’ influenced differential ginsenoside production and exudation into medium with concurrent Rg3/Rh2 panaxadiol induction in Panax quinquefolius cell suspensions
    Tanya Biswas
    Alok Kalra
    A. K. Mathur
    R. K. Lal
    Manju Singh
    Archana Mathur
    Applied Microbiology and Biotechnology, 2016, 100 : 4909 - 4922
  • [26] Relationship Between Ginsenoside Rg3 and Metabolic Syndrome
    Lee, Hyunji
    Kong, Gyeyeong
    Tran, Quangdon
    Kim, Chaeyeong
    Park, Jisoo
    Park, Jongsun
    FRONTIERS IN PHARMACOLOGY, 2020, 11
  • [27] Anti-Angiogenic Properties of Ginsenoside Rg3
    Nakhjavani, Maryam
    Smith, Eric
    Townsend, Amanda R.
    Price, Timothy J.
    Hardingham, Jennifer E.
    MOLECULES, 2020, 25 (21):
  • [28] The angiosuppressive effects of 20(R)- ginsenoside Rg3
    Yue, Patrick Y. K.
    Wong, Daisy Y. L.
    Wu, P. K.
    Leung, P. Y.
    Mak, N. K.
    Yeung, H. W.
    Liu, L.
    Cai, Zongwei
    Jiang, Zhi-Hong
    Fan, T. P. D.
    Wong, . Ricky N. S.
    BIOCHEMICAL PHARMACOLOGY, 2006, 72 (04) : 437 - 445
  • [29] Cooperated biotransformation of ginsenoside extracts into ginsenoside 20(S)-Rg3 by three thermostable glycosidases
    Zhang, S.
    Luo, J.
    Xie, J.
    Wang, Z.
    Xiao, W.
    Zhao, L.
    JOURNAL OF APPLIED MICROBIOLOGY, 2020, 128 (03) : 721 - 734
  • [30] Ginsenoside Rh2 and Rg3 inhibit cell proliferation and induce apoptosis by increasing mitochondrial reactive oxygen species in human leukemia Jurkat cells
    Xia, Ting
    Wang, Ying-Nan
    Zhou, Chuan-Xin
    Wu, Li-Mei
    Liu, Yong
    Zeng, Qian-Hong
    Zhang, Xiang-Long
    Yao, Jia-Hui
    Wang, Min
    Fang, Jian-Pei
    MOLECULAR MEDICINE REPORTS, 2017, 15 (06) : 3591 - 3598