生物化学
主要促进者超家族
代谢工程
曲酸
蓝蛋白
化学
衣康酸
生物
酶
基因
运输机
有机化学
聚合物
脂肪酸合酶
酪氨酸酶
共聚物
作者
Shuang Deng,Joonhoon Kim,Kyle Pomraning,Yuqian Gao,James Evans,Beth A. Hofstad,Ziyu Dai,Bobbie‐Jo Webb‐Robertson,Samantha Powell,Irina Novikova,Nathalie Munoz Munoz,Young‐Mo Kim,Marie Swita,A. Robles,Teresa Lemmon,Rylan D. Duong,Carrie Nicora,Kristin Burnum-Johnson,Jon Magnuson
标识
DOI:10.1016/j.ymben.2023.09.011
摘要
Aconitic acid is an unsaturated tricarboxylic acid that is attractive for its potential use in manufacturing biodegradable and biocompatible polymers, plasticizers, and surfactants. Previously Aspergillus pseudoterreus was engineered as a platform to produce aconitic acid by deleting the cadA (cis-aconitic acid decarboxylase) gene in the itaconic acid biosynthetic pathway. In this study, the aconitic acid transporter gene (aexA) was identified using comparative global discovery proteomics analysis between the wild-type and cadA deletion strains. The protein AexA belongs to the Major Facilitator Superfamily (MFS). Deletion of aexA almost abolished aconitic acid secretion, while its overexpression led to a significant increase in aconitic acid production. Transportation of aconitic acid across the plasma membrane is a key limiting step in its production. In vitro, proteoliposome transport assay further validated AexA's function and substrate specificity. This research provides new approaches to efficiently pinpoint and characterize exporters of fungal organic acids and accelerate metabolic engineering to improve secretion capability and lower the cost of bioproduction.
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