The protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes

Abstract Both gamma rays and atmospheric pressure plasma are known to have anticancer properties. While their mechanism actions are still not clear, in some contexts they work in similar manner, while in other contexts they work differently. So to understand these relationships, we have studied Myog...

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Autores principales: Pankaj Attri, Minsup Kim, Thapanut Sarinont, Eun Ha Choi, Hyunwoong Seo, Art E. Cho, Kazunori Koga, Masaharu Shiratani
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/cbf5573bee5a4ac8a2c8ad8f7c608002
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spelling oai:doaj.org-article:cbf5573bee5a4ac8a2c8ad8f7c6080022021-12-02T12:32:16ZThe protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes10.1038/s41598-017-08643-12045-2322https://doaj.org/article/cbf5573bee5a4ac8a2c8ad8f7c6080022017-08-01T00:00:00Zhttps://doi.org/10.1038/s41598-017-08643-1https://doaj.org/toc/2045-2322Abstract Both gamma rays and atmospheric pressure plasma are known to have anticancer properties. While their mechanism actions are still not clear, in some contexts they work in similar manner, while in other contexts they work differently. So to understand these relationships, we have studied Myoglobin protein after the treatment of gamma rays and dielectric barrier discharge (DBD) plasma, and analyzed the changes in thermodynamic properties and changes in the secondary structure of protein after both treatments. The thermodynamic properties were analyzed using chemical and thermal denaturation after both treatments. We have also studied the action of gamma rays and DBD plasma on myoglobin in the presence of osmolytes, such as sorbitol and trehalose. For deep understanding of the action of gamma rays and DBD plasma, we have analyzed the reactive species generated by them in buffer at all treatment conditions. Finally, we have used molecular dynamic simulation to understand the hydrogen peroxide action on myoglobin with or without osmolytes, to gain deeper insight into how the osmolytes can protect the protein structure from the reactive species generated by gamma rays and DBD plasma.Pankaj AttriMinsup KimThapanut SarinontEun Ha ChoiHyunwoong SeoArt E. ChoKazunori KogaMasaharu ShirataniNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 7, Iss 1, Pp 1-13 (2017)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Pankaj Attri
Minsup Kim
Thapanut Sarinont
Eun Ha Choi
Hyunwoong Seo
Art E. Cho
Kazunori Koga
Masaharu Shiratani
The protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes
description Abstract Both gamma rays and atmospheric pressure plasma are known to have anticancer properties. While their mechanism actions are still not clear, in some contexts they work in similar manner, while in other contexts they work differently. So to understand these relationships, we have studied Myoglobin protein after the treatment of gamma rays and dielectric barrier discharge (DBD) plasma, and analyzed the changes in thermodynamic properties and changes in the secondary structure of protein after both treatments. The thermodynamic properties were analyzed using chemical and thermal denaturation after both treatments. We have also studied the action of gamma rays and DBD plasma on myoglobin in the presence of osmolytes, such as sorbitol and trehalose. For deep understanding of the action of gamma rays and DBD plasma, we have analyzed the reactive species generated by them in buffer at all treatment conditions. Finally, we have used molecular dynamic simulation to understand the hydrogen peroxide action on myoglobin with or without osmolytes, to gain deeper insight into how the osmolytes can protect the protein structure from the reactive species generated by gamma rays and DBD plasma.
format article
author Pankaj Attri
Minsup Kim
Thapanut Sarinont
Eun Ha Choi
Hyunwoong Seo
Art E. Cho
Kazunori Koga
Masaharu Shiratani
author_facet Pankaj Attri
Minsup Kim
Thapanut Sarinont
Eun Ha Choi
Hyunwoong Seo
Art E. Cho
Kazunori Koga
Masaharu Shiratani
author_sort Pankaj Attri
title The protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes
title_short The protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes
title_full The protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes
title_fullStr The protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes
title_full_unstemmed The protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes
title_sort protective action of osmolytes on the deleterious effects of gamma rays and atmospheric pressure plasma on protein conformational changes
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/cbf5573bee5a4ac8a2c8ad8f7c608002
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