苹果酸
黑曲霉
苹果酸酶
生物化学
生物合成
代谢工程
化学
曲霉
代谢途径
生物
酶
微生物学
脱氢酶
柠檬酸
作者
Na Wu,Xingyu Wu,Mingyu Zhang,Chi Zhang,Qing Xu
标识
DOI:10.1002/biot.202400014
摘要
Abstract Microbial production of L‐malic acid from renewable carbon sources has attracted extensive attention. The reduced cofactor NADPH plays a key role in biotransformation because it participates in both biosynthetic reactions and cellular stress responses. In this study, NADPH or its precursors nicotinamide and nicotinic acid were added to the fermentation medium of Aspergillus niger RG0095, which significantly increased the yield of malic acid by 11%. To further improve the titer and productivity of L‐malic acid, we increased the cytoplasmic NADPH levels of A. niger by upregulating the NAD kinases Utr1p and Yef1p. Biochemical analyses demonstrated that overexpression of Utr1p and Yef1p reduced oxidative stress, while also providing more NADPH to catalyze the conversion of glucose into malic acid. Notably, the strain overexpressing Utr1p reached a malate titer of 110.72 ± 1.91 g L −1 after 108 h, corresponding to a productivity of 1.03 ± 0.02 g L −1 h −1 . Thus, the titer and productivity of malate were increased by 24.5% and 44.7%, respectively. The strategies developed in this study may also be useful for the metabolic engineering of fungi to produce other industrially relevant bulk chemicals.
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