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Role of hydrogenases 3 and 4 in Escherichia coli growth and H_2 producing hydrogenase activity during anaerobic utilization of lactose

机译:乳糖厌氧利用过程中加氢酶3和4在大肠杆菌生长和H_2产生加氢酶活性中的作用

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It is known that Escherichia coli produces hydrogen gas (H-2) during mixed acid fermentation via hydrogenase (Hyd) enzymes utilizing sugars, alcohols or organic acids. However, there are many sugars including lactose which are not studied well. Therefore, H-2 production and responsible Hyd enzymes activity and role have been investigated. During lactose fermentation (1-5 g L-1) by E. coli mainly Hyd-4 and partially Hyd-3 have been shown to affect cell growth and H2 production at different pHs. At 2 g L-1 lactose fermentation in hyfG (lacking large subunit of Hyd-4) mutant at pH 5.5 and 6.5 resulted in the decrease of specific growth rate -2.5-fold and -1.8-fold, respectively, compared to wild type. Hyd-3 contribution to cell growth was observed at pH 6.5 with 1 g L-1 and at pH 7.5 with 5 g L-1 lactose fermentation. In addition, external pH during 24 or 48 h was less acidified in hyfG mutant cells grown at pH 6.5 than in wild type. Moreover, the H-2 yield in wild type cells was 6.00 +/- 0.017 mmol L-1. Hyd-3 and Hyd-4 were responsible for H-2 production at pH 7.5, 6.5 and 5.5, as shown by using hycE (lacking large subunit of Hyd-3) and hyfG single and hycE hyfB-R (lacking Hyd-3 large subunit and several subunits of Hyd-4) double mutants. These findings provide novel insights into the H-2 producing activity of E. coli Hyd-3 and Hyd-4 during utilization of lactose and might be useful for improving H(2 )production from lactose or lactose containing various wastes. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:众所周知,在混合酸发酵过程中,大肠杆菌通过利用糖,醇或有机酸的氢化酶(Hyd)酶产生氢气(H-2)。但是,包括乳糖在内的许多糖类并未得到很好的研究。因此,已经研究了H-2的产生和负责的Hyd酶的活性和作用。在大肠杆菌进行的乳糖发酵(1-5 g L-1)过程中,主要显示为Hyd-4和部分Hyd-3影响细胞在不同pH下的生长和H2的产生。与野生型相比,在2 g L-1乳糖在hyfG(缺少Hyd-4的大亚基)突变体中在pH 5.5和6.5下发酵导致比生长速率分别下降了-2.5倍和-1.8倍。在1 g L-1的pH 6.5和5 g L-1乳糖发酵的pH 7.5下观察到Hyd-3对细胞生长的贡献。此外,与野生型相比,在pH 6.5下生长的hyfG突变细胞在24或48 h内的外部酸化程度较低。此外,野生型细胞中H-2的产量为6.00 +/- 0.017mmol L-1。 Hyd-3和Hyd-4负责在pH 7.5、6.5和5.5下生成H-2,如使用hycE(缺少Hyd-3的大亚基)和hyfG single和hycE hyfB-R(缺少Hyd-3的大图)所显示的亚型和Hyd-4)双突变体的几个亚基。这些发现为利用乳糖期间大肠杆菌Hyd-3和Hyd-4的H-2产生活性提供了新颖的见解,并且可能对改善乳糖或含各种废物的乳糖产生H(2)的产生有用。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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