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Optimized enzymatic dual functions of PaPrx protein by proton irradiation
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نویسنده
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park c.-h. ,lee s.s. ,kim k.r. ,jung m.h. ,lee s.y. ,cho e.j. ,singh s. ,chung b.y.
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منبع
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journal of radiation research - 2014 - دوره : 55 - شماره : 1 - صفحه:17 -24
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چکیده
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We investigated the effects of proton irradiation on the function and structure of the pseudomonas aeruginosa peroxiredoxin (paprx). polyacrylamide gel demonstrated that paprx proteins exposed to proton irradiation at several doses exhibited simultaneous formation of high molecular weight (hmw) complexes and fragmentation. size-exclusion chromatography (sec) analysis revealed that the number of fragments and very low molecular weight (lmw) structures increased as the proton irradiation dose increased. the peroxidase activity of irradiated paprx was preserved,and its chaperone activity was significantly increased by increasing the proton irradiation dose. the chaperone activity increased about 3-4 fold after 2.5 kgy proton irradiation,compared with that of non-irradiated paprx,and increased to almost the maximum activity after 10 kgy proton irradiation. we previously obtained functional switching in paprx proteins,by using gamma rays and electron beams as radiation sources,and found that the proteins exhibited increased chaperone activity but decreased peroxidase activity. interestingly,in this study we newly found that proton irradiation could enhance both peroxidase and chaperone activities. therefore,we can suggest proton irradiation as a novel protocol for conserved 2-cys protein engineering. © 2013 the author.
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کلیدواژه
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chaperone; peroxidase; peroxiredoxin; proton irradiation
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آدرس
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division for biotechnology,advanced radiation technology institute (arti),korea atomic energy research institute (kaeri),29 geumgu-gil,jeongeup 580-185,south korea,school of biological sciences and biotechnology,chonnam national university,gwangju 500-757, South Korea, division for biotechnology,advanced radiation technology institute (arti),korea atomic energy research institute (kaeri),29 geumgu-gil,jeongeup 580-185, South Korea, proton engineering frontier project,korea atomic energy research institute,gyeongju 780-904, South Korea, proton engineering frontier project,korea atomic energy research institute,gyeongju 780-904, South Korea, division of applied life sciences (bk21 program),gyeongsang national university,jinju 660-701, South Korea, division for biotechnology,advanced radiation technology institute (arti),korea atomic energy research institute (kaeri),29 geumgu-gil,jeongeup 580-185, South Korea, division for biotechnology,advanced radiation technology institute (arti),korea atomic energy research institute (kaeri),29 geumgu-gil,jeongeup 580-185, South Korea, division for biotechnology,advanced radiation technology institute (arti),korea atomic energy research institute (kaeri),29 geumgu-gil,jeongeup 580-185, South Korea
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Authors
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