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首页> 外文期刊>Open Journal of Applied Sciences >Preparation of Chiral Hydroxy Esters Using Actinobacteria: Biocatalyst Activity of Marine-Derived Micromonospora and Streptomyces Strains
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Preparation of Chiral Hydroxy Esters Using Actinobacteria: Biocatalyst Activity of Marine-Derived Micromonospora and Streptomyces Strains

机译:使用放线菌的手性羟基酯的制备:海洋衍生的微单孢菌和链霉菌菌株的生物催化活性。

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To research the potential ability of marine-derived actinomycetes to act as biocatalysts, 8 Micromonospora strains and 5 Streptomyces strains were screened. Two recommended media (227 and 1076 media) and 2 modified media (1076-25% and P-1076-25% media) for liquid culture of these marine-derived actinomycetes were tested. As a result, 2 Micromonospora strains (Micromonospora sp. NBRC107096 and 107097) cultured with the 1076-25% medium and 2 Streptomyces strains (Streptomyces tateyamensis NBRC105048 and Streptomyces sp. NBRC105896) cultured with P-1076-25% medium showed a good growth. The stereoselective reduction of α-keto esters using these 4 actinomycetes was tested. As a result, it was found that these strains had a reducing activity toward various α-keto esters. The introduction of L-glutamate or sucrose as an additive remarkably increased the conversion ratios in the reduction of substrates by the Micromonospora strain. Furthermore, in the presence of L-alanine, Streptomyces tateyamensis NBRC105048 reduced ethyl pyruvate, ethyl 2-oxobutanoate, ethyl 2-oxopentanoate, ethyl 2-oxohexanoate, and ethyl 3-methyl-2-oxobutyrate to the corresponding α-hydroxy ester with a high conversion ratio and with excellent enantiomeric excess. Thus, we found that these marine-derived actinomycetes have great potential to be used as biocatalysts for stereoselective reduction of carbonyl compounds.
机译:为了研究海洋来源的放线菌作为生物催化剂的潜在能力,筛选了8种微单孢菌和5种链霉菌。测试了用于这些海洋来源的放线菌的液体培养的两种推荐培养基(227和1076培养基)和2种改良培养基(1076-25%和P-1076-25%)。结果,用1076-25%的培养基培养的2种微单孢菌菌株(Micromonospora sp。NBRC107096和107097)和用P-1076-25%的培养基培养的2种链霉菌菌株(tateyamensis链霉菌NBRC105048和Streptomyces sp.NBRC105896)显示出良好的成长。测试了使用这4种放线菌的立体选择性还原α-酮酯。结果,发现这些菌株对各种α-酮酯具有还原活性。引入L-谷氨酸或蔗糖作为添加剂可显着提高微单孢菌菌株在底物还原中的转化率。此外,在L-丙氨酸的存在下,阔叶链霉菌NBRC105048将丙酮酸乙酯,2-氧代丁酸乙酯,2-氧戊酸乙酯,2-氧己酸乙酯和3-甲基-2-氧丁酸乙酯还原为相应的α-羟基酯,其中高转化率和优异的对映体过量。因此,我们发现这些海洋来源的放线菌具有巨大的潜力,可以用作立体选择性还原羰基化合物的生物催化剂。

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