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Whole-Cell Biocatalysis for 1-Naphthol Production in Liquid-Liquid Biphasic Systems

机译:全细胞生物催化在液体双相系统中生产1-萘酚

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摘要

Whole-cell biocatalysis to oxidize naphthalene to 1-naphthol in liquid-liquid biphasic systems was performed. Escherichia coli expressing TOM-Green, a variant of toluene ortho-monooxygenase (TOM), was used for this oxidation. Three different solvents, dodecane, dioctyl phthalate, and lauryl acetate, were screened for biotransformations in biphasic media. Of the solvents tested, lauryl acetate gave the best results, producing 0.72 ± 0.03 g/liter 1-naphthol with a productivity of 0.46 ± 0.02 g/g (dry weight) cells after 48 h. The effects of the organic phase ratio and the naphthalene concentration in the organic phase were investigated. The highest 1-naphthol concentration (1.43 g/liter) and the highest 1-naphthol productivity (0.55 g/g [dry weight] cells) were achieved by optimization of the organic phase. The ability to recycle both free cells and cells immobilized in calcium alginate was tested. Both free and immobilized cells lost more than ∼60% of their activity after the first run, which could be attributed to product toxicity. On a constant-volume basis, an eightfold improvement in 1-naphthol production was achieved using biphasic media compared to biotransformation in aqueous media.
机译:进行了全细胞生物催化,以在液-液双相系统中将萘氧化为1-萘酚。表达TOM-Green(甲苯原单加氧酶(TOM)的变体)的大肠杆菌用于该氧化。筛选了三种不同的溶剂十二烷,邻苯二甲酸二辛酯和乙酸月桂酯在双相介质中的生物转化。在测试的溶剂中,乙酸月桂酯产生了最佳结果,在48小时后产生了0.72±0.03 g /升的1-萘酚,产率为0.46±0.02 g / g(干重)。研究了有机相比例和有机相中萘浓度的影响。通过优化有机相,可获得最高的1-萘酚浓度(1.43 g /升)和最高的1-萘酚生产率(0.55 g / g [干重]细胞)。测试了回收游离细胞和固定在藻酸钙中的细胞的能力。第一次运行后,游离细胞和固定化细胞的活性损失都超过60%,这可能归因于产品毒性。在恒定体积的基础上,与水性介质中的生物转化相比,使用双相介质可将1-萘酚的产量提高八倍。

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