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大肠杆菌中的需氧三甲胺 N-氧化物呼吸作用。

Aerobic TMAO respiration in Escherichia coli.

作者信息

Ansaldi Mireille, Théraulaz Laurence, Baraquet Claudine, Panis Gaël, Méjean Vincent

机构信息

Laboratoire de Chimie Bactérienne, Institut de Biologie Structurale et Microbiologie, Centre National de la Recherche Scientifique, 31, chemin Joseph Aiguier, 13402 Marseille Cedex 20, France.

出版信息

Mol Microbiol. 2007 Oct;66(2):484-94. doi: 10.1111/j.1365-2958.2007.05936.x. Epub 2007 Sep 10.

Abstract

In the absence of oxygen, Escherichia coli can use alternative exogenous electron acceptors, including trimethylamine oxide (TMAO), to generate energy. In this study, we showed that in contrast to the other anaerobic respiratory systems, the TMAO reductase (Tor) system was expressed during both aerobiosis and anaerobiosis. By using a torA-lacZ fusion and quantitative reverse transcription polymerase chain reaction, we established that the torCAD operon encoding the Tor system was induced in the presence of TMAO mainly during exponential phase, and that optimal induction required a certain level of DNA supercoiling. We also showed that the presence of oxygen prevented neither the biogenesis of the Tor system nor the reduction of TMAO. The physiological role of TMAO reduction during aerobiosis has not been yet established, but our experiments suggest that alkaline TMA production could enhance the growth conditions by increasing the pH of the culture.

摘要

在无氧条件下,大肠杆菌可以利用包括氧化三甲胺(TMAO)在内的替代性外源电子受体来产生能量。在本研究中,我们发现与其他厌氧呼吸系统不同,TMAO还原酶(Tor)系统在需氧和厌氧条件下均有表达。通过使用torA - lacZ融合蛋白和定量逆转录聚合酶链反应,我们确定编码Tor系统的torCAD操纵子主要在指数生长期的TMAO存在时被诱导,并且最佳诱导需要一定水平的DNA超螺旋。我们还表明,氧气的存在既不阻止Tor系统的生物合成,也不阻止TMAO的还原。需氧条件下TMAO还原的生理作用尚未确定,但我们的实验表明,碱性TMA的产生可能通过提高培养物的pH值来改善生长条件。

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