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在甲苯-水两相体系中通过缓解重组腈水解酶对底物的抑制作用显著提高(R)-扁桃酸的产量。

Significant enhancement of (R)-mandelic acid production by relieving substrate inhibition of recombinant nitrilase in toluene-water biphasic system.

机构信息

Laboratory of Biocatalysis and Bioprocessing, State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, China.

出版信息

J Biotechnol. 2011 Mar 10;152(1-2):24-9. doi: 10.1016/j.jbiotec.2011.01.013. Epub 2011 Jan 22.

Abstract

The enantioselective hydrolysis of mandelonitrile with whole cells of a recombinant Escherichia coli expressing nitrilase activity was severely inhibited by the substrate at high concentrations (>300mM), which resulted in a low yield of the target product (R)-(-)-mandelic acid. To relieve the substrate inhibition and to enhance the (R)-(-)-mandelic acid productivity, eight water-organic solvent biphasic systems were attempted in this work. Toluene was found to be the most suitable solvent as the organic phase among the solvents tested. Various parameters were systematically examined and optimized in shake flasks. The phase volume ratio, buffer pH and reaction temperature were shown to be sensitive parameters affecting both the yield and the enantiopurity of product in the biphasic system. Under the optimized conditions, significant enhancement of substrate tolerance from 200mM to 500mM and average productivity from 179.6gl(-1)d(-1) to 352.6gl(-1)d(-1) were achieved. Subsequently, the biocatalytic hydrolysis of mandelonitrile was successfully carried out in a stirred reactor (2-l scale) by repeated use of the calcium alginate entrapped cells for 5 batches, affording 110.7g (R)-(-)-mandelic acid in 98.0% ee (enantiomeric excess) and a specific production of 13.8g (mandelic acid) g(-1) (cell), respectively.

摘要

用表达腈水解酶活力的重组大肠杆菌全细胞进行扁桃腈的对映选择性水解时,高浓度(>300mM)的底物会严重抑制反应,导致目标产物(R)-(-)-扁桃酸的产率很低。为了缓解底物抑制并提高(R)-(-)-扁桃酸的生产力,本文尝试了八种水-有机溶剂双相体系。在测试的溶剂中,甲苯被发现是最适合作为有机相的溶剂。在摇瓶中系统地考察和优化了各种参数。结果表明,相比体积比、缓冲液 pH 值和反应温度是影响双相体系中产物产率和对映体纯度的敏感参数。在优化条件下,底物容忍度从 200mM 显著提高到 500mM,平均生产力从 179.6gl(-1)d(-1)提高到 352.6gl(-1)d(-1)。随后,通过重复使用海藻酸钙包埋细胞,在搅拌式反应器(2 升规模)中成功地进行了扁桃腈的生物催化水解,分别获得了 110.7g(R)-(-)-扁桃酸(ee 值为 98.0%)和 13.8g(扁桃酸)g(-1)(细胞)的特定产量。

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