首页> 外文期刊>Journal of natural products >Microbial transformations of chalcones: hydroxylation, O-demethylation, and cyclization to flavanones.
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Microbial transformations of chalcones: hydroxylation, O-demethylation, and cyclization to flavanones.

机译:查耳酮的微生物转化:羟基化,O-去甲基化和环化成黄烷酮。

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摘要

Microorganisms were examined for their potential to catalyze biotransformation reactions that mimic plant biosynthetic processes. Specifically, microorganisms were screened for their abilities to transform selected chalcones to flavonoid and other products. Aspergillus alliaceus UI 315 efficiently transformed 3-(2' ',3' '-dimethoxyphenyl)-1-(2'-hydroxyphenyl)propenone (2'-hydroxy-2,3-dimethoxychalcone) (1) to several products, all of which were characterized by UV, NMR, and mass spectral analyses. A. alliaceus cyclized 1 to three flavanones and to O-demethylated and hydroxylated chalcones, some of which functioned as intermediates in the cyclization process. Inhibition studies using SKF525A, metyrapone, and phenylthiocarbamide with whole cell reactions showed that as many as three cytochrome P450 enzymes may be involved in these reactions. One enzyme catalyzed chalcone cyclization; another, O-demethylation; and a third, hydroxylation of chalcones. Flavonoid products are racemic, unlike the same products that are stereoselectively cyclized in plants. This work shows that microorganisms are capable of cyclizing chalcones to form flavonoid products, thus affording a mimic of plant biosynthetic processes.
机译:检查了微生物催化类似植物生物合成过程的生物转化反应的潜力。具体而言,筛选微生物将选定的查耳酮转化为类黄酮和其他产物的能力。曲霉菌UI 315有效地将3-(2'',3''-二甲氧基苯基)-1-(2'-羟基苯基)丙烯酮(2'-羟基-2,3-二甲氧基查尔酮)(1)转化为几种产品通过UV,NMR和质谱分析对其进行表征。 A. alliaceus将1到3个黄烷酮以及O-去甲基化和羟基化的查耳酮环化,其中一些在环化过程中充当中间体。使用SKF525A,甲吡酮和苯硫脲进行全细胞反应的抑制研究表明,这些反应可能涉及多达三种细胞色素P450酶。一种酶催化查耳酮环化;另一个,O-去甲基化;第三,查耳酮的羟基化。类黄酮产品具有消旋性,与在植物中进行立体选择性环化的产品不同。这项工作表明,微生物能够将查耳酮环化以形成类黄酮产物,从而模拟植物的生物合成过程。

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