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首页> 外文期刊>International journal of hydrogen energy >Evidence for hydrogenase-4 catalyzed biohydrogen production in Escherichia coli
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Evidence for hydrogenase-4 catalyzed biohydrogen production in Escherichia coli

机译:大肠杆菌中加氢酶4催化的生物氢产生的证据

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Biohydrogen production by Escherichia coli during fermentation of the mixture of glycerol, glucose and formate at different pH values was studied. Employing mutants lacking large subunits of different hydrogenases (Hyd), it was reported that, at pH 7.5, H-2 production was produced except in a hyaB hybC hycE triple mutant, thus suggesting compensatory H-2 -producing functions of the Hyd enzymes. Activity of Hyd-4 was revealed in glucose assays at pH 7.5 in the triple mutant whereby 62% of the wild type level of H-2 production was derived from Hyd-4. In formate assays, it was shown, that, first, the hyaB hybC double mutant had a H-2 production similar to 3 fold higher than wild type, indicating that Hyd-1 and Hyd-2 oxidize H-2, and second, that at pH 5.5, Hyd-4 and Hyd-3 were responsible for H-2 production. These findings are significant when applying various carbon sources such as sugars, alcohol and organic acids for biohydrogen production. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了在不同pH值下甘油,葡萄糖和甲酸混合物发酵过程中大肠杆菌产生的生物氢。据报道,利用缺乏不同氢化酶(Hyd)的大亚基的突变体,在pH 7.5下,除了在hyaB hybC hycE三重突变体中产生了H-2的产生,因此暗示了Hyd酶的补偿性H-2产生功能。在三重突变体中在pH 7.5的葡萄糖测定中揭示了Hyd-4的活性,其中野生型水平的H-2产生的62%来自Hyd-4。在甲酸盐分析中显示,首先,hyaB hybC双突变体的H-2产量比野生型高3倍,表明Hyd-1和Hyd-2氧化H-2,其次,在pH 5.5下,Hyd-4和Hyd-3负责H-2的产生。当将各种碳源(如糖,酒精和有机酸)用于生产生物氢时,这些发现意义重大。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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