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利用耐辐射球菌的辐射诱导启动子增强铀的沉淀

Harnessing a radiation inducible promoter of Deinococcus radiodurans for enhanced precipitation of uranium.

作者信息

Misra Chitra Seetharam, Mukhopadhyaya Rita, Apte Shree Kumar

机构信息

Molecular Biology Division, Bhabha Atomic Research Centre, Trombay, Mumbai, 400085, India.

Molecular Biology Division, Bhabha Atomic Research Centre, Trombay, Mumbai, 400085, India.

出版信息

J Biotechnol. 2014 Nov 10;189:88-93. doi: 10.1016/j.jbiotec.2014.09.013. Epub 2014 Sep 28.

Abstract

Bioremediation is an attractive option for the treatment of radioactive waste. We provide a proof of principle for augmentation of uranium bioprecipitation using the radiation inducible promoter, Pssb from Deinococcus radiodurans. Recombinant cells of D. radiodurans carrying acid phosphatase gene, phoN under the regulation of Pssb when exposed to 7 kGy gamma radiation at two different dose rates of 56.8 Gy/min and 4 Gy/min, showed 8-9 fold increase in acid phosphatase activity. Highest whole cell PhoN activity was obtained after 2h in post irradiation recovery following 8 kGy of high dose rate radiation. Such cells showed faster removal of high concentrations of uranium than recombinant cells expressing PhoN under a radiation non-inducible deinococcal promoter, PgroESL and could precipitate uranium even after continuous exposure to 0.6 Gy/min gamma radiation for 10 days. Radiation induced recombinant D. radiodurans cells when lyophilized retained high levels of PhoN activity and precipitated uranium efficiently. These results highlight the importance of using a suitable promoter for removal of radionuclides from solution.

摘要

生物修复是处理放射性废物的一个有吸引力的选择。我们提供了一个原理证明,即利用来自耐辐射球菌的辐射诱导启动子Pssb增强铀的生物沉淀。携带酸性磷酸酶基因phoN的耐辐射球菌重组细胞,在Pssb的调控下,当以56.8 Gy/min和4 Gy/min这两种不同剂量率暴露于7 kGyγ辐射时,酸性磷酸酶活性增加了8至9倍。在8 kGy高剂量率辐射后的辐照后恢复2小时后,获得了最高的全细胞PhoN活性。与在耐辐射球菌的非辐射诱导启动子PgroESL控制下表达PhoN的重组细胞相比,这些细胞显示出能更快地去除高浓度的铀,并且即使在连续暴露于0.6 Gy/minγ辐射10天后仍能沉淀铀。辐射诱导的耐辐射球菌重组细胞冻干后仍保留高水平的PhoN活性,并能有效地沉淀铀。这些结果突出了使用合适的启动子从溶液中去除放射性核素的重要性。

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