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Metabolic Engineering of TCA Cycle for Production of Chemicals

机译:TCA循环的代谢工程用于化学品生产

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The tricarboxylic acid (TCA) cycle has been used for decades in the microbial production of chemicals such as citrate, L-glutamate, and succinate. Maximizing yield is key for cost-competitive production. However, for most TCA cycle products, the maximum pathway yield is lowerthan the theoretical maximum yield (YE). For succinate, this was solved by creating two pathways to the product, using both branches of the TCA cycle, connected by the glyoxylate shunt (GS). A similar solution cannot be applied directly for production of compounds from the oxidative branch of the TCA cycle because irreversible reactions are involved. Here, we describe how this can be overcome and what the impact is on the yield.
机译:三羧酸(TCA)循环已在微生物生产化学物质(例如柠檬酸盐,L-谷氨酸和琥珀酸盐)中使用了数十年。最大化产量是具有成本竞争力的生产的关键。但是,对于大多数TCA循环产物,最大途径产量低于理论最大产量(YE)。对于琥珀酸酯,这可以通过使用TCA循环的两个分支(通过乙醛酸酯分流器(GS)连接)创建通往产品的两条途径来解决。由于涉及不可逆反应,因此类似的解决方案无法直接应用于从TCA循环的氧化分支生产化合物的过程。在这里,我们描述了如何克服这种情况以及对产量有何影响。

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