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首页> 外文期刊>Enzyme and Microbial Technology >Application of continuous stirred membrane reactor to 3-cyanopyridine bioconversion using the nitrile hydratase-amidase cascade system of Microbacterium imperiale CBS 498-74
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Application of continuous stirred membrane reactor to 3-cyanopyridine bioconversion using the nitrile hydratase-amidase cascade system of Microbacterium imperiale CBS 498-74

机译:连续搅拌膜反应器在Imperiale CBS 498-74腈水合酶-酰胺酶级联反应系统3-氰基吡啶生物转化中的应用

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摘要

The bioconversion of 3-cyanopyridine using the in situ nitrile hydratase-amidase cascade system of resting Microbacterium imperiale CBS 498-74 cells was investigated in an ultrafiltration-membrane reactor, operated in either batch or continuous mode. The effects of operating conditions such as the amount of biocatalyst, substrate concentration, substrate feeding rate, mean residence time, and enzyme-to-substrate ratio, were investigated with the aim of achieving almost 100% substrate conversion and high reactor productivity. As a result, it was found that the NHase-AMase cascade system could be adequately exploited in a continuous reactor configuration. The differing temperature dependence of nitrile hydratase and amidase kinetics enabled the operational parameters to be module d to ensure (i) nitrile hydratase operational stability (at 5 °C), and (ii) 100% conversion of 3-cyanopyridine into nicotinic acid, or, alternatively, (iii) enrichment of the effluent stream with the intermediate nicotinamide (up to 80% conversion). It was possible to select operating conditions that allowed long periods of operation (at least 100 h) at a constant flow-rate without enzyme activity loss.
机译:在超滤膜反应器中以间歇或连续模式研究了使用静止的帝国细菌CBS 498-74细胞的原位腈水合酶-酰胺酶级联系统对3-氰基吡啶的生物转化。为了达到几乎100%的底物转化率和高反应器生产率,研究了操作条件的影响,例如生物催化剂的量,底物浓度,底物进料速率,平均停留时间和酶与底物的比率。结果,发现NHase-AMase级联系统可以在连续反应器配置中得到充分利用。腈水合酶和酰胺酶动力学的不同温度依赖性使操作参数成为模块d,以确保(i)腈水合酶的操作稳定性(在5°C时),和(ii)3-氰基吡啶100%转化为烟酸,或或者,(iii)用中间烟酰胺富集流出物流(转化率最高为80%)。可以选择允许在恒定流速下长期运行(至少100小时)而不会损失酶活性的运行条件。

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