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乳糖操纵子激活、Yhha基因缺失以及去除氧气对大肠杆菌超微弱光子发射的影响。

Effects of Lac operon activation, deletion of the Yhha gene, and the removal of oxygen on the ultra-weak photon emission of Escherichia coli.

作者信息

Laager Frédéric M, Becker Nicholas M, Park Sang-Hyun, Soh Kwang-Sup

机构信息

Biomedical Physics Laboratory, Department of Physics and Astronomy, Seoul National University, Seoul, Korea.

出版信息

Electromagn Biol Med. 2009;28(3):240-9. doi: 10.3109/15368370903065820.

Abstract

We observed a relation between gene activity and ultra-weak photon emission (UPE). By comparing the UPEs of E. coli with the LacI gene present and deleted we found that more gene activity produced higher UPE. This relation was further confirmed by studying the UPE of the E. coli with and without the Yhha gene. We interpreted that a higher aminoacyl t-RNA synthetase activity, which used ATP from the respiratory chain, could increase the emission. Satisfying the increased need of ATP by the E. coli through an increase of respiratory chain activity, which has reactive oxygen species (ROS) as a byproduct, results in a higher rate of photon emission. To ensure that oxygen is at the origin of this emission, we replaced the air by pure nitrogen. After 30 min, it was observed that the emission levels equaled the emission levels of the sterile medium. We could therefore conclude that the source of the photon emission would be affected by genetic activity and is oxygen related.

摘要

我们观察到基因活性与超微弱光子发射(UPE)之间的关系。通过比较存在和缺失LacI基因的大肠杆菌的UPE,我们发现更多的基因活性产生更高的UPE。通过研究有和没有Yhha基因的大肠杆菌的UPE,这一关系得到了进一步证实。我们解释说,使用来自呼吸链的ATP的较高氨酰t-RNA合成酶活性可以增加发射。通过增加呼吸链活性来满足大肠杆菌对ATP增加的需求,呼吸链活性会产生作为副产物的活性氧(ROS),从而导致更高的光子发射率。为了确保氧气是这种发射的来源,我们用纯氮气取代了空气。30分钟后,观察到发射水平等于无菌培养基的发射水平。因此,我们可以得出结论,光子发射的来源会受到基因活性的影响,并且与氧气有关。

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