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离子液体在冷大气等离子体和伽马射线存在下对蛋白质热力学的影响。

Impact of an ionic liquid on protein thermodynamics in the presence of cold atmospheric plasma and gamma rays.

作者信息

Attri Pankaj, Kim Minsup, Choi Eun Ha, Cho Art E, Koga Kazunori, Shiratani Masaharu

机构信息

Plasma Bioscience Research Center/Department of Electrical and Biological Physics, Kwangwoon University, Seoul 01897, Korea.

出版信息

Phys Chem Chem Phys. 2017 Sep 27;19(37):25277-25288. doi: 10.1039/c7cp04083k.

Abstract

Cold atmospheric plasma and gamma rays are known to have anticancer properties, even though their specific mechanisms and roles as co-solvents during their action are still not clearly understood. Despite the use of gamma rays in cancer therapy, they have oncogenic potential, whereas this has not been observed for plasma treatment (to date). To gain a better understanding, we studied the action of dielectric barrier discharge (DBD) plasma and gamma rays on the myoglobin protein. We analyzed the secondary structure and thermodynamic properties of myoglobin after both treatments. In addition, in the last few years, ammonium ionic liquids (ILs) have revealed their important role in protein folding as co-solvents. In this work, we treated the protein with ammonium ILs such as triethylammonium methanesulfonate (TEMS) and tetrabutylammonium methanesulfonate (TBMS) and later treated this IL-protein solution with DBD plasma and gamma rays. In this study, we show the chemical and thermal denaturation of the protein after plasma and gamma treatments in the presence and absence of ILs using circular dichroism (CD) and UV-vis spectroscopy. Furthermore, we also show the influence of plasma and gamma rays on the secondary structure of myoglobin in the absence and presence of ILs or ILs + urea using CD. Finally, molecular dynamic simulations were conducted to gain deeper insight into how the ILs behave to protect the protein against the hydrogen peroxide generated by the DBD plasma and gamma rays.

摘要

已知低温大气等离子体和伽马射线具有抗癌特性,尽管它们的具体作用机制以及在作用过程中作为共溶剂的角色仍未完全明了。尽管伽马射线已用于癌症治疗,但其具有致癌潜力,而等离子体治疗(迄今为止)尚未观察到这种情况。为了更好地理解,我们研究了介质阻挡放电(DBD)等离子体和伽马射线对肌红蛋白的作用。我们分析了两种处理后肌红蛋白的二级结构和热力学性质。此外,在过去几年中,铵离子液体(ILs)已显示出它们作为共溶剂在蛋白质折叠中发挥的重要作用。在这项工作中,我们用三乙铵甲磺酸盐(TEMS)和四丁铵甲磺酸盐(TBMS)等铵离子液体处理该蛋白质,随后用DBD等离子体和伽马射线处理这种离子液体 - 蛋白质溶液。在本研究中,我们使用圆二色性(CD)和紫外 - 可见光谱展示了在有和没有离子液体存在的情况下,等离子体和伽马处理后蛋白质的化学和热变性。此外,我们还使用CD展示了在没有和存在离子液体或离子液体 + 尿素的情况下,等离子体和伽马射线对肌红蛋白二级结构的影响。最后,进行了分子动力学模拟,以更深入地了解离子液体如何发挥作用来保护蛋白质免受DBD等离子体和伽马射线产生的过氧化氢的影响。

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