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Monoamine oxidase and transaminase screening: biotransformation of 2-methyl-6-alkylpiperidines by Neopestalotiopsis sp. CBMAI 2030

机译:单胺氧化酶和转氨酶的筛选:新孢霉菌属菌种对2-甲基-6-烷基哌啶的生物转化。 CBMAI 2030

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摘要

High-throughput screening detected transaminases (TAs) and monoamine oxidases (MAOs) in fungi by applying a fluorogenic probe. Strains F026, F037, F041, F053, and F057 showed the highest enzymatic conversions (31, 60, 30, 40, and 32%, respectively) and where evaluated for their ability to transform piperidines. Strain F053 (Neopestalotiopsis sp. CBMAI 2030) revealed unusual enzymatic activity to deracemize 2-methyl-6-alkylpiperidines. Neopestalotiopsis sp. CBMAI 2030 was capable to convert 2-methyl-6-propylpiperidine, 2-methyl-6-butylpiperidine, and 2-methyl-6-pentylpiperidine in piperideine with 11, 14, and 24% conversion, respectively. The activity was enhanced by cultivating the fungus with 2-methyl-6-pentylpiperidine (38% conversion and 73% ee).Electronic supplementary materialThe online version of this article (doi:10.1007/s00253-017-8389-z) contains supplementary material, which is available to authorized users.
机译:通过使用荧光探针,高通量筛选可检测真菌中的转氨酶(TAs)和单胺氧化酶(MAOs)。菌株F026,F037,F041,F053和F057表现出最高的酶促转化率(分别为31%,60%,30%,40%和32%),并对其转化哌啶的能力进行了评估。菌株F053(猪新孢子虫(Neopestalotiopsis)sp.CBMAI 2030)显示出异常的酶活性来使2-甲基-6-烷基哌啶脱硫。新孢霉菌CBMAI 2030能够分别以11%,14%和24%的转化率在哌啶中转化2-甲基-6-丙基哌啶,2-甲基-6-丁基哌啶和2-甲基-6-戊基哌啶。通过用2-甲基-6-戊基哌啶(38%转化率和73%ee)培养真菌来增强活性。电子补充材料本文的在线版本(doi:10.1007 / s00253-017-8389-z)包含补充材料,可供授权用户使用。

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