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筛选产生低温活性氧化还原酶的微生物,以应用于对映选择性醇氧化。南极调查。

Screening of microorganisms producing cold-active oxidoreductases to be applied in enantioselective alcohol oxidation. An Antarctic survey.

机构信息

Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes 748, SP 05508-900, São Paulo, Brazil.

Instituto Oceanográfico, Universidade de São Paulo, Praça do Oceanográfico 191, SP 05508-120, São Paulo, Brazil.

出版信息

Mar Drugs. 2011;9(5):889-905. doi: 10.3390/md9050889. Epub 2011 May 24.

Abstract

Several microorganisms were isolated from soil/sediment samples of Antarctic Peninsula. The enrichment technique using (RS)-1-(phenyl)ethanol as a carbon source allowed us to isolate 232 psychrophile/psychrotroph microorganisms. We also evaluated the enzyme activity (oxidoreductases) for enantioselective oxidation reactions, by using derivatives of (RS)-1-(phenyl)ethanol as substrates. Among the studied microorganisms, 15 psychrophile/psychrotroph strains contain oxidoreductases that catalyze the (S)-enantiomer oxidation from racemic alcohols to their corresponding ketones. Among the identified microorganisms, Flavobacterium sp. and Arthrobacter sp. showed excellent enzymatic activity. These new bacteria strains were selected for optimization study, in which the (RS)-1-(4-methyl-phenyl)ethanol oxidation was evaluated in several reaction conditions. From these studies, it was observed that Flavobacterium sp. has an excellent enzymatic activity at 10 °C and Arthrobacter sp. at 15 and 25 °C. We have also determined the growth curves of these bacteria, and both strains showed optimum growth at 25 °C, indicating that these bacteria are psychrotroph.

摘要

从南极半岛的土壤/沉积物样本中分离出了几种微生物。使用 (RS)-1-(苯基)乙醇作为碳源的富集技术使我们能够分离出 232 种嗜冷/嗜冷微生物。我们还评估了用 (RS)-1-(苯基)乙醇衍生物作为底物的对映选择性氧化反应的酶活性(氧化还原酶)。在所研究的微生物中,15 株嗜冷/嗜冷菌株含有氧化还原酶,可催化外消旋醇的 (S)-对映体氧化为相应的酮。在鉴定出的微生物中,黄杆菌属和节杆菌属表现出优异的酶活性。这些新的细菌菌株被选中进行优化研究,其中在几种反应条件下评估了 (RS)-1-(4-甲基-苯基)乙醇的氧化。从这些研究中可以看出,黄杆菌属在 10°C 时具有极好的酶活性,节杆菌属在 15°C 和 25°C 时具有极好的酶活性。我们还测定了这些细菌的生长曲线,两种菌株都在 25°C 时表现出最佳生长,表明这些细菌是嗜冷菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e591/3111190/8735fd10c812/marinedrugs-09-00889f1.jpg

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