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Change in the enzymatic dual function of the peroxiredoxin protein by gamma irradiation

机译:γ射线辐照过氧化物酶蛋白的酶促双功能变化

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PP1084 protein was exposed to gamma irradiation ranging from 5 to 500 kGy. Native PAGE showed minor structural changes in PP1084 at 5 kGy, and major structural changes at > 15 kGy. Size-exclusion chromatography (SEC) showed the formation of a new shoulder peak when the protein was irradiated with 15 and 30 kGy, and a double peak appeared at 100 kGy. The results of PAGE and SEC imply that PP1084 protein is degraded by gamma irradiation, with simultaneous oligomerization. PP1084 chaperone activity' reached the highest level at 30 kGy of gamma irradiation, and then, decreased in a dose-dependent manner with increasing gamma irradiation. However, the peroxidase activity significantly decreased following exposure to all intensities of gamma irradiation. The improvement of chaperone activity using gamma irradiation might be promoted by the oligomeric structures containing covalently cross-linked amino acids. Consequently, PP1084 modification using gamma irradiation could elevate chaperone activity by about 3-4 folds compared to the non-irradiated protein.
机译:将PP1084蛋白暴露于5至500 kGy的伽马辐射。天然PAGE在5 kGy处显示PP1084的较小结构变化,而在> 15 kGy处显示主要结构变化。体积排阻色谱法(SEC)显示,当蛋白分别用15和30 kGy照射时,会形成新的肩峰,而在100 kGy处出现双峰。 PAGE和SEC的结果表明,PP1084蛋白会被伽玛射线降解,同时发生寡聚。 PP1084分子伴侣活性在γ辐照30 kGy时达到最高水平,然后随着γ辐照的增加呈剂量依赖性降低。但是,暴露于所有强度的γ射线照射后,过氧化物酶活性显着降低。含有共价交联氨基酸的寡聚结构可能会促进使用γ射线辐照来改善分子伴侣的活性。因此,与未辐照的蛋白质相比,使用γ辐照的PP1084修饰可以将伴侣活性提高约3-4倍。

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