氧化脱氨基
亮氨酸
催化作用
合理设计
化学
热稳定性
突变体
催化效率
生物化学
氨基酸
酶
组合化学
有机化学
材料科学
纳米技术
基因
作者
Xiang Zhang,Xi-Chuan Zhang,Hong‐Ling Shi,Huimin Zhang,Jianhui Zhang,Chao Yue,Dandan Li,Lunguang Yao,Cun‐Duo Tang
标识
DOI:10.1021/acs.jafc.4c02152
摘要
Leucine dehydrogenase (LeuDH, EC 1.4.1.9) can reversibly catalyze the oxidative deamination of l-leucine and some other specific α-amino acids to form the corresponding α-ketoacids. This reaction has great significance in the field of food additives and the pharmaceutical industry. The LeuDH from Exiguobacterium sibiricum (EsLeuDH) has high catalytic efficiency but limited thermal stability, hindering its widespread industrial application. In this study, a mutant N5F/I12L/A352Y of EsLeuDH (referred to as M2) was developed with enhanced thermal stability and catalytic activity through rational modification. The M2 mutant exhibits a half-life at 60 °C (t1/2(60 °C)) of 975.7 min and a specific activity of 69.6 U mg–1, which is 5.4 and 2.1 times higher than those of EsLeuDH, respectively. This research may facilitate the utilization of EsLeuDH at elevated temperatures, enhancing its potential for industrial applications. The findings offer a practical and efficient approach for optimizing LeuDH and other industrial enzymes.
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