Rhodococcus rhodochrous tg1-A6腈水解酶催化3-氰基吡啶合成烟酸的研究

Conversion of 3-cyanopyridine to nicotinic acid by nitrilase in Rhodococcus rhodochrous tg1-A6

  • 摘要: 利用高产腈水解酶的菌株Rhodococcus rhodochrous tg1-A6催化3-氰基吡啶合成烟酸,实验结果表明,腈水解酶的最适底物浓度为130mmol/L,最适催化温度为55℃,最适pH值为pH7.0.经过15h连续补加底物3-氰基吡啶,反应体系中产物烟酸的浓度可达到165.2g/L.在产物浓度累积不高的情况下,菌体经过7批次(共67h)的催化,烟酸的最终质量浓度累计可达到529g/L.

     

    Abstract: The strain of Rhodococcus rhodochrous tg1-A6 with high activity of nitrilase was used to convert 3-cyanopyridine to nicotinic acid.By using resting cells,the optimum substrate concentration was 130 mmol/L,and the optimized temperature and pH were 55℃ and 7.0,respectively.Under the optimal conditions,100% of the added 3-cyanopyridine could be converted,and the highest concentration of nicotinic acid in reaction mixture achieved 165.2 g/L at 15 h.In case of higher yield,the resting cells could be reused for seven batches catalyzing(total 67 h),and the summed yield of nicotinic acid could reach 529 g/L.

     

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