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海洋来源真菌青霉(Penicillium raistrickii)菌丝体对卤代 2'-羟基查耳酮的加氢反应。

Hydrogenation of Halogenated 2'-Hydroxychalcones by Mycelia of Marine-Derived Fungus Penicillium raistrickii.

机构信息

Laboratório de Química Orgânica e Biocatálise, Instituto de Química de São Carlos, Universidade de São Paulo, Av. João Dagnone, 1100, Ed. Química Ambiental, Jd. Santa Angelina, São Carlos, São Paulo, 13563-120, Brazil.

Laboratório de Biotecnologia Microbiana, Instituto de Química de São Carlos, Universidade de São Paulo, Av. João Dagnone, 1100, Ed. Química Ambiental, Jd. Santa Angelina, São Carlos, São Paulo, 13563-120, Brazil.

出版信息

Mar Biotechnol (NY). 2019 Jun;21(3):430-439. doi: 10.1007/s10126-019-09893-y. Epub 2019 Mar 20.

Abstract

This study describes the chemoselective hydrogenation reaction of halogenated 2'-hydroxychalcones by the marine-derived fungus Penicillium raistrickii CBMAI 931. Initially, 2'-hydroxychalcone was utilized as a model for the selection of the appropriate conditions to perform the biotransformation reactions. The best results were obtained using mycelia and filtered culture broth, and this condition was chosen for the biotransformation reaction of 2'-hydroxychalcones substituted with methoxy and halogen groups. Experiments performed with 2'-hydroxychalcones dissolved in 600 μL-DMSO were more effective than those performed using 300 μL-DMSO, once solubility of the compounds influenced conversion rate in the liquid medium. The halogenated 2'-hydroxy-dihydrochalcones were obtained in good conversions (78-99%) and moderate isolated yields (31-65%). All biotransformation reactions using the marine-derived fungus P. raistrickii CBMAI 931 showed regioselective and chemoselective control for the formation of 2'-hydroxy-dihydrochalcones.

摘要

本研究描述了海洋来源真菌青霉(Penicillium raistrickii)CBMAI 931 对卤代 2'-羟基查耳酮的选择性加氢反应。最初,使用 2'-羟基查耳酮作为选择合适条件进行生物转化反应的模型。使用菌丝体和过滤培养物获得了最佳结果,因此选择该条件用于取代甲氧基和卤素基团的 2'-羟基查耳酮的生物转化反应。在 600μL-DMSO 中溶解的 2'-羟基查耳酮进行的实验比在 300μL-DMSO 中进行的实验更有效,因为化合物的溶解度影响了液体介质中的转化率。卤代 2'-羟基二氢查耳酮以良好的转化率(78-99%)和中等的分离产率(31-65%)获得。使用海洋来源真菌青霉(Penicillium raistrickii)CBMAI 931 进行的所有生物转化反应都表现出对 2'-羟基二氢查耳酮形成的区域选择性和化学选择性控制。

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