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新型嗜冷菌单胺氧化酶 MAO P3 介导的胺类的绿色氧化。

Green Oxidation of Amines by a Novel Cold-Adapted Monoamine Oxidase MAO P3 from Psychrophilic Fungi sp. P3.

机构信息

Institute of Molecular and Industrial Biotechnology, Lodz University of Technology, 90-537 Lodz, Poland.

Institute of Natural Products and Cosmetics, Lodz University of Technology, 90-537 Lodz, Poland.

出版信息

Molecules. 2021 Oct 15;26(20):6237. doi: 10.3390/molecules26206237.

Abstract

The use of monoamine oxidases (MAOs) in amine oxidation is a great example of how biocatalysis can be applied in the agricultural or pharmaceutical industry and manufacturing of fine chemicals to make a shift from traditional chemical synthesis towards more sustainable green chemistry. This article reports the screening of fourteen Antarctic fungi strains for MAO activity and the discovery of a novel psychrozyme MAOP3 isolated from the sp. P3. The activity of the native enzyme was 1350 ± 10.5 U/L towards a primary (-butylamine) amine, and 1470 ± 10.6 U/L towards a secondary (6,6-dimethyl-3-azabicyclohexane) amine. MAO P3 has the potential for applications in biotransformations due to its wide substrate specificity (aliphatic and cyclic amines, pyrrolidine derivatives). The psychrozyme operates at an optimal temperature of 30 °C, retains 75% of activity at 20 °C, and is rather thermolabile, which is beneficial for a reduction in the overall costs of a bioprocess and offers a convenient way of heat inactivation. The reported biocatalyst is the first psychrophilic MAO; its unique biochemical properties, substrate specificity, and effectiveness predispose MAO P3 for use in environmentally friendly, low-emission biotransformations.

摘要

单胺氧化酶(MAOs)在胺氧化中的应用是生物催化如何在农业或制药工业以及精细化学品制造中得到应用的一个很好的例子,它可以实现从传统化学合成向更可持续的绿色化学的转变。本文报道了对 14 株南极真菌菌株进行 MAO 活性筛选的结果,并发现了一种新型的冷适应酶 MAOP3,它是从 sp. P3 中分离出来的。该天然酶对伯胺(-丁基胺)的活性为 1350±10.5 U/L,对仲胺(6,6-二甲基-3-氮杂双环[3.1.0]己烷)的活性为 1470±10.6 U/L。MAO P3 由于其广泛的底物特异性(脂肪族和环状胺、吡咯烷衍生物),具有在生物转化中应用的潜力。该冷适应酶的最佳作用温度为 30°C,在 20°C 时保留 75%的活性,且相当热敏,这有利于降低生物工艺的总成本,并提供了一种方便的热失活方法。报道的生物催化剂是第一种嗜冷 MAO;其独特的生化特性、底物特异性和有效性使 MAO P3 适合用于环保、低排放的生物转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9506/8538783/77c90c4dac8d/molecules-26-06237-sch001.jpg

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