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首页> 外文期刊>Journal of Biotechnology >Improved poly(3-hydroxybutyrate) production in Escherichia coli by inactivation of cytochrome bd-II oxidase or/and NDH-II dehydrogenase in low efficient respiratory chains
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Improved poly(3-hydroxybutyrate) production in Escherichia coli by inactivation of cytochrome bd-II oxidase or/and NDH-II dehydrogenase in low efficient respiratory chains

机译:通过灭活低效呼吸链中的细胞色素bd-II氧化酶或/和NDH-II脱氢酶改善大肠杆菌中的聚(3-羟基丁酸)生产

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摘要

In order to redirect more carbon flux from TCA cycle into poly(3-hydroxybutyrate) (PHB) biosynthesis pathway via increasing respiratory efficiency, appB and ndh genes encoding cytochrome bd-II oxidase and NDH-II dehydrogenase were inactivated in Escherichia coli JM109/pBHR68. All appB or/and ndh knockout strains exhibited significantly increased PHB accumulation accompanying with increasedNAD(P)H/NAD(P)(+) ratio and intracellular acetyl-CoA pool. Among them, the Delta ndh strain could accumulate up to 6.16 g/L PHB from 20 g/L glucose and 3.5 g/L PHB from 20 g/L xylose, respectively, a 1.76-fold and 3.43-fold increase compared to the wild-type control. The PHB production of this strain reached 28.23 g/L in a 5-L fermentor study, which was 2.70-fold as much as that of the wild-type control. Theseresults indicated that inactivating the cytochrome bd-II oxidase or/and NDH-II dehydrogenase of the aerobic respiratory chain is a simple and effective strategy to improve PHB biosynthesis in E. coli. To date, this is the first time to improve PHB production by inactivation of cytochrome bd-II oxidase or/and NDH-II dehydrogenase in low efficient respiratory chains. (C) 2014 Elsevier B.V. All rights reserved.
机译:为了通过提高呼吸效率将更多的碳通量从TCA循环重定向到聚(3-羟基丁酸)(PHB)生物合成途径,在大肠杆菌JM109 / pBHR68中灭活了编码细胞色素bd-II氧化酶和NDH-II脱氢酶的appB和ndh基因。所有的appB或/和ndh基因敲除菌株均显示PHB积累显着增加,同时NAD(P)H / NAD(P)(+)比率和细胞内乙酰辅酶A库增加。其中,Delta ndh菌株可从20 g / L葡萄糖中积累高达6.16 g / L PHB,从20 g / L木糖中积累高达3.5 g / L PHB,与野生种相比增加了1.76倍和3.43倍型控件。在5 L发酵罐研究中,该菌株的PHB产量达到28.23 g / L,是野生型对照的2.70倍。这些结果表明,使有氧呼吸链的细胞色素bd-II氧化酶或/和NDH-II脱氢酶失活是改善大肠杆菌中PHB生物合成的简单有效的策略。迄今为止,这是第一次通过在低效率的呼吸链中失活细胞色素bd-II氧化酶或/和NDH-II脱氢酶来提高PHB的产生。 (C)2014 Elsevier B.V.保留所有权利。

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