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Production of itaconate by whole-cell bioconversion of citrate mediated by expression of multiple cis-aconitate decarboxylase (cadA) genes in Escherichia coli

机译:大肠杆菌中柠檬酸的全细胞生物转化介导衣康酸酯的产生柠檬酸的全细胞生物转化是在大肠杆菌中表达多个顺式-aconitate脱羧酶(cadA)基因介导的

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摘要

Itaconate, a C5 unsaturated dicarboxylic acid, is an important chemical building block that is used in manufacturing high-value products, such as latex and superabsorbent polymers. Itaconate is produced by fermentation of sugars by the filamentous fungus Aspergillus terreus. However, fermentation by A. terreus involves a long fermentation period and the formation of various byproducts, resulting in high production costs. E. coli has been developed as an alternative for producing itaconate. However, fermentation of glucose gives low conversion yields and low productivity. Here, we report the whole-cell bioconversion of citrate to itaconate with enhanced aconitase and cis-aconitate decarboxylase activities by controlling the expression of multiple cadA genes. In addition, this bioconversion system does not require the use of buffers, which reduces the production cost and the byproducts released during purification. Using this whole-cell bioconversion system, we were able to catalyze the conversion of 319.8 mM of itaconate (41.6 g/L) from 500 mM citrate without any buffer system or additional cofactors, with 64.0% conversion in 19 h and a productivity of 2.19 g/L/h. Our bioconversion system suggests very high productivity for itaconate production.
机译:衣康酸酯,一种C5不饱和二元羧酸,是一种重要的化学构件,可用于制造高价值产品,例如乳胶和超吸收性聚合物。衣康酸酯是通过丝状真菌曲霉曲霉糖发酵而产生的。然而,土曲霉的发酵涉及长的发酵时间和各种副产物的形成,导致高生产成本。已经开发出大肠杆菌作为生产衣康酸酯的替代品。然而,葡萄糖的发酵产生低转化率和低生产率。在这里,我们通过控制多个cadA基因的表达,报告了柠檬酸到衣康酸酯的全细胞生物转化,其具有增强的乌头酸酶和顺酰胺酸脱羧酶活性。另外,该生物转化系统不需要使用缓冲液,从而降低了生产成本和纯化过程中释放的副产物。使用这种全细胞生物转化系统,我们能够催化从500μmM柠檬酸盐中转化出319.8μmM的衣康酸酯(41.6μg/ L),而无需任何缓冲系统或其他辅因子,在19μh内的转化率为64.0%,生产率为2.19克/升/小时我们的生物转化系统表明衣康酸酯生产具有很高的生产率。

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