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Current state and perspectives in hydrogen production by Escherichia coli: roles of hydrogenases in glucose or glycerol metabolism

机译:大肠杆菌的氢气产量的当前状态和透视:葡萄糖或甘油代谢中氢酶的作用

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Escherichia coli has been a robust host strain for much biological research, in particular, research in metabolic engineering, protein engineering, and heterologous gene expression. In this mini review, to understand bacterial hydrogen production by E. coli, the effect of glucose and glycerol metabolism on hydrogen production is compared, and the current approaches to enhance hydrogen production from glycerol as a substrate are reviewed. In addition, the argument from past to present on the functions of E. coli hydrogenases, hydrogenase 1, hydrogenase 2, hydrogenase 3, and hydrogenase 4 is summarized. Furthermore, based on the literature that the E. coli formate-hydrogen lyase is essential for bacterial hydrogen production via recombinant hydrogenases, research achievements from the past regarding heterologous production of hydrogenase are rethought.
机译:大肠杆菌是一种强大的宿主菌株,特别是在代谢工程,蛋白质工程和异源基因表达中研究。 在该迷你评论中,为了了解大肠杆菌的细菌氢产生,比较了葡萄糖和甘油代谢对氢气产生的影响,并回顾了当前从甘油中加强甘油产生的方法。 另外,总结了过去关于FIRS氢酶,氢酶1,氢酶2,氢酶3和氢酶4的功能的论据。 此外,基于通过重组氢酶产生的大肠杆菌甲酸氢裂解酶对细菌氢产生的必需细菌氢气产生的研究,预期来自过去关于异源生产的过去的研究成果。

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