辅因子
烟酰胺腺嘌呤二核苷酸
烟酰胺腺嘌呤二核苷酸磷酸
酶
NAD+激酶
生物化学
烟酰胺
化学
大肠杆菌
氧化还原酶
立体化学
生物
基因
氧化酶试验
作者
Sabine Brinkmann‐Chen,Tilman Flock,J.K.B. Cahn,Christopher D. Snow,Eric M. Brustad,John A. McIntosh,Peter Meinhold,Liang Zhang,Frances H. Arnold
标识
DOI:10.1073/pnas.1306073110
摘要
To date, efforts to switch the cofactor specificity of oxidoreductases from nicotinamide adenine dinucleotide phosphate (NADPH) to nicotinamide adenine dinucleotide (NADH) have been made on a case-by-case basis with varying degrees of success. Here we present a straightforward recipe for altering the cofactor specificity of a class of NADPH-dependent oxidoreductases, the ketol-acid reductoisomerases (KARIs). Combining previous results for an engineered NADH-dependent variant of Escherichia coli KARI with available KARI crystal structures and a comprehensive KARI-sequence alignment, we identified key cofactor specificity determinants and used this information to construct five KARIs with reversed cofactor preference. Additional directed evolution generated two enzymes having NADH-dependent catalytic efficiencies that are greater than the wild-type enzymes with NADPH. High-resolution structures of a wild-type/variant pair reveal the molecular basis of the cofactor switch.
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