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GE Hai-Xia, ZHANG Jian, QIAN Kun, YU Bo-Yang, CHEN Xiao-Ping. Diversity synthesis of tetrahydroprotoberberines glycosides by combined chemical and microbial catalysis[J]. 中国天然药物, 2016, 14(10): 783-788.
引用本文: GE Hai-Xia, ZHANG Jian, QIAN Kun, YU Bo-Yang, CHEN Xiao-Ping. Diversity synthesis of tetrahydroprotoberberines glycosides by combined chemical and microbial catalysis[J]. 中国天然药物, 2016, 14(10): 783-788.
GE Hai-Xia, ZHANG Jian, QIAN Kun, YU Bo-Yang, CHEN Xiao-Ping. Diversity synthesis of tetrahydroprotoberberines glycosides by combined chemical and microbial catalysis[J]. Chinese Journal of Natural Medicines, 2016, 14(10): 783-788.
Citation: GE Hai-Xia, ZHANG Jian, QIAN Kun, YU Bo-Yang, CHEN Xiao-Ping. Diversity synthesis of tetrahydroprotoberberines glycosides by combined chemical and microbial catalysis[J]. Chinese Journal of Natural Medicines, 2016, 14(10): 783-788.

Diversity synthesis of tetrahydroprotoberberines glycosides by combined chemical and microbial catalysis

Diversity synthesis of tetrahydroprotoberberines glycosides by combined chemical and microbial catalysis

  • 摘要: The present study was designed to construct the structurally diverse library of tetrahydroprotoberberines (THPBs) by combining the methods of chemical nonselective demethylation and microbial glycosylation. HPLC-MS/MS analyses tentatively identified 12 de-methylated and 9 glycosylated derivates of THPBs and 5 rarely oxidized glycosides of THPBs in the library. Through this effort, we achieved not only a variety of the THPBs and their glycosides but also tested the catalytic characteristics and capabilities of G. deliquescens NRRL 1086.

     

    Abstract: The present study was designed to construct the structurally diverse library of tetrahydroprotoberberines (THPBs) by combining the methods of chemical nonselective demethylation and microbial glycosylation. HPLC-MS/MS analyses tentatively identified 12 de-methylated and 9 glycosylated derivates of THPBs and 5 rarely oxidized glycosides of THPBs in the library. Through this effort, we achieved not only a variety of the THPBs and their glycosides but also tested the catalytic characteristics and capabilities of G. deliquescens NRRL 1086.

     

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