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Metabolic network analysis during fed-batch cultivation of Corynebacterium glutamicum for pantothenic acid production: first quantitative data and analysis of by-product formation

机译:谷氨酸棒杆菌分批培养生产泛酸过程中的代谢网络分析:第一定量数据和副产物形成分析

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摘要

A first generation genetically modified strain of Corynebacterium glutamicum has been assessed for its potential to synthesise and accumulate the vitamin pantothenic acid in the medium using fed-batch cultivation technology, with biomass concentration controlled by isoleucine limitation. Kinetic analysis of specific rates throughout the process has been used to model carbon flux through both central metabolism and the specific pathways involved in product formation. Flux towards pantothenic acid is potentially high but much of this flux is dissipated as by-products within associated pathways, notably linked to amino acid synthesis. The major limitation of vitamin production in this strain is linked to the tenfold higher flux of keto-isovalerate towards valine rather than pantothenic, acid. Attempts to modify this ratio by imposing nitrogen limitation provoked carbon overflow as unidentified non-nitrogenous compounds. The observed accumulation of glycine suggests that the flux towards pantothenate production may by limited by the rate of the pathway intermediate (5,10-methylene-tetrahydrofolate) regeneration.
机译:已使用补料分批培养技术评估了第一代谷氨酸棒杆菌的基因改造菌株在培养基中合成和积累维生素泛酸的潜力,其中生物量浓度受异亮氨酸限制。整个过程中特定速率的动力学分析已用于通过中心代谢和参与产品形成的特定途径对碳通量进行建模。泛酸的通量可能很高,但是大部分通量在相关途径中作为副产物消散,特别是与氨基酸合成有关。该菌株中维生素生产的主要局限性在于,异戊酸酮向缬氨酸而不是泛酸的通量提高了十倍。试图通过施加氮限制来改变该比率,导致碳溢出为未鉴定的非氮化合物。观察到的甘氨酸积累表明,通向泛酸生产的通量可能受到途径中间体(5,10-亚甲基-四氢叶酸)再生速率的限制。

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