首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Improvement of nitrilase production from a newly isolated Alcaligenes faecalis mutant for biotransformation of iminodiacetonitrile to iminodiacetic acid
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Improvement of nitrilase production from a newly isolated Alcaligenes faecalis mutant for biotransformation of iminodiacetonitrile to iminodiacetic acid

机译:用于新亚胺二乙腈向亚胺二乙酸生物转化的新分离的产碱杆菌粪便突变体提高腈水解酶的产量

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摘要

The nitrilase activity of a newly isolate strain, Alcaligenes faecalis WBX11, which is capable of catalyzing the direct hydrolysis of iminodiacetonitrile to its corresponding dicarboxylic acid iminodiacetic acid, was significantly enhanced by low-energy ion beam implantation, a novel microbial breeding way. After ion implantation, nitrilase activity and the total biomass of the mutant were significantly improved by 45% and 75%, respectively, compared with the wild strain. The temperature and pH optimum of the variant nitrilase were 35. °C and pH 7.5, respectively, basically consistent with those of the wild strain. The nitrilase was mesophilic because of the quick deactivation in temperature higher than 45. °C. Nitrilase showed a broad substrate spectrum, especially on arylacetonitrile and aliphatic nitrile. Study on reaction kinetics showed that no obvious substrate inhibition was observed even though the concentration of the substrate was up to 250. mM. All results indicate that the low-energy ion implantation is an effective way for microbial breeding and the resulting mutant may be suitable for industrial applications.
机译:低能离子束注入是一种新型的微生物繁殖方法,能够显着提高新分离菌株Alcaligenes faecalis WBX11的腈水解酶活性,该菌株能够催化亚氨基二乙腈直接水解为相应的二羧酸亚氨基二乙酸。离子植入后,与野生菌株相比,突变体的腈水解酶活性和总生物量分别显着提高了45%和75%。变体腈水解酶的最适温度和最适pH分别为35. C和最适pH 7.5,与野生菌株基本一致。腈水解酶是嗜温的,因为在高于45°C的温度下会迅速失活。腈水解酶显示出较宽的底物谱,尤其是在芳基乙腈和脂族腈上。反应动力学研究表明,即使底物浓度高达250. mM,也没有观察到明显的底物抑制作用。所有结果表明,低能离子注入是微生物繁殖的有效方法,所得突变体可能适合工业应用。

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