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海洋微生物用于生物催化:耐盐解脂假丝酵母菌株对腈的选择性水解。

Marine Microorganisms for Biocatalysis: Selective Hydrolysis of Nitriles with a Salt-Resistant Strain of Meyerozyma guilliermondii.

机构信息

Department of Food, Environmental and Nutritional Sciences (DeFENS), University of Milan, Via L. Mangiagalli 25, Milan, Italy.

出版信息

Mar Biotechnol (NY). 2019 Apr;21(2):229-239. doi: 10.1007/s10126-019-09875-0. Epub 2019 Jan 25.

Abstract

A screening among marine yeasts was carried out for nitrile hydrolyzing activity. Meyerozyma guilliermondii LM2 (UBOCC-A-214008) was able to efficiently grow on benzonitrile and cyclohexanecarbonitrile (CECN) as sole nitrogen sources. A two-step one-pot method for obtaining cells of M. guilliermondii LM2 (UBOCC-A-214008) endowed with high nitrilase activity was established; the resulting whole cells converted different nitriles with high molar conversions and showed interesting enantioselectivity toward racemic substrates. Nitrilase from M. guilliermondii LM2 (UBOCC-A-214008) displayed high activity on aromatic substrates, but also arylaliphatic and aliphatic substrates were accepted. Salt-resistant M. guilliermondii LM2 (UBOCC-A-214008) was used in media with different salinity, being highly active up to 1.5 M NaCl concentration. Finally, hydrolysis of nitriles was efficiently performed using a bioprocess (yeast growth and biotransformation with resting cells) entirely carried out in seawater.

摘要

进行了海洋酵母的筛选,以寻找腈水解活性。梅里埃氏酵母 LM2(UBOCC-A-214008)能够有效地以苯甲腈和环己甲腈(CECN)作为唯一氮源生长。建立了一种两步一锅法获得具有高腈酶活性的梅里埃氏酵母 LM2(UBOCC-A-214008)细胞的方法;所得的完整细胞以高摩尔转化率转化了不同的腈,并对消旋底物表现出有趣的对映选择性。梅里埃氏酵母 LM2(UBOCC-A-214008)的腈酶对芳香族底物具有高活性,但也接受芳基脂肪族和脂肪族底物。耐盐性梅里埃氏酵母 LM2(UBOCC-A-214008)在不同盐度的培养基中使用,在高达 1.5 M NaCl 浓度下仍保持高度活性。最后,使用生物过程(在海水中进行酵母生长和固定化细胞生物转化)有效地进行了腈的水解。

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