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以抗氰化物的bd型泛醇氧化酶作为唯一末端氧化酶的产乙醇运动发酵单胞菌呼吸链分析及其可能的生理作用

Analysis of the respiratory chain in Ethanologenic Zymomonas mobilis with a cyanide-resistant bd-type ubiquinol oxidase as the only terminal oxidase and its possible physiological roles.

作者信息

Sootsuwan Kaewta, Lertwattanasakul Noppon, Thanonkeo Pornthap, Matsushita Kazunobu, Yamada Mamoru

机构信息

Department of Biological Chemistry, Faculty of Agriculture, Yamaguchi University, Yamaguchi, Japan.

出版信息

J Mol Microbiol Biotechnol. 2008;14(4):163-75. doi: 10.1159/000112598. Epub 2007 Dec 14.

DOI:10.1159/000112598
PMID:18089934
Abstract

The respiratory chain of the ethanologenic bacterium Zymomonas mobilis was investigated, in which the pyruvate-to-ethanol pathway has been demonstrated to be mainly responsible for NADH oxidation and the tricarboxylic acid cycle is incomplete. Membranes from cells cultivated under aerobic or anaerobic growth conditions showed dehydrogenase and oxidase activities for NADH, D-lactate and D-glucose and ubiquinol oxidase activity. Intriguingly, the NADH oxidase activity level of membrane fractions from cells grown aerobically was found to be higher than that of membrane fractions from Escherichia coli or Pseudomonas putida grown aerobically, indicating a crucial role of the respiratory chain in NADH oxidation in the organism. Cyanide-resistant terminal oxidase activity was observed and appeared to be due to a bd-type ubiquinol oxidase as the only terminal oxidase encoded by the entire genome. The terminal oxidase with a relatively strong ubiquinol oxidase activity exhibited remarkably weak signals of cytochrome d. Considering these findings and the presence of a type-II NADH dehydrogenase but not a type-I, a simple respiratory chain that generates less energymay have evolved in Z. mobilis.

摘要

对产乙醇细菌运动发酵单胞菌的呼吸链进行了研究,其中丙酮酸到乙醇的途径已被证明主要负责NADH氧化,且三羧酸循环不完整。在有氧或厌氧生长条件下培养的细胞的膜显示出对NADH、D-乳酸和D-葡萄糖的脱氢酶和氧化酶活性以及泛醇氧化酶活性。有趣的是,发现有氧生长的细胞的膜组分的NADH氧化酶活性水平高于有氧生长的大肠杆菌或恶臭假单胞菌的膜组分,这表明呼吸链在该生物体的NADH氧化中起关键作用。观察到抗氰末端氧化酶活性,似乎是由于bd型泛醇氧化酶是整个基因组编码的唯一末端氧化酶。具有相对较强泛醇氧化酶活性的末端氧化酶显示出非常弱的细胞色素d信号。考虑到这些发现以及存在II型NADH脱氢酶而非I型,运动发酵单胞菌可能已经进化出了一条产生较少能量的简单呼吸链。

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