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Differential expression of specific cellular defense proteins in rat hypothalamus under simulated microgravity induced conditions: Comparative proteomics

机译:在模拟微重力诱导条件下大鼠下丘脑中特定细胞防御蛋白的差异表达:比较蛋白质组学

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Microgravity severely halts the structural and functional cerebral capacity of astronauts especially affecting their brains due to the stress produced by cephalic fluid shift. We employed a rat tail suspension model to substantiate simulated microgravity (SM) in brain. In this study, comparative mass spectrometry was applied in order to demonstrate the differential expression of 17 specific cellular defense proteins. Gamma-enolase, peptidyl-prolyl cis-trans isomerase A, glial fibrillary acidic protein, heat shock protein HSP 90-alpha, 10 kDa heat shock protein, mitochondrial, heat shock cognate 71 kDa protein, superoxide dismutase 1 and dihydropyrimidinase-related protein 2 were found to be upregulated by HPLC/ESI-TOF. Furthermore, five differentially expressed proteins including 60 kDa heat shock protein, mitochondrial, heat shock protein HSP 90-beta, peroxiredoxin-2, stress-induced-phosphoprotein, and UCHL-1 were found to be upregulated by HPLC/ESI-Q-TOF MS. In addition, downregulated proteins include cytochrome C, superoxide dismutase 2, somatic, and excitatory amino acid transporter 1 and protein DJ-1. Validity of MS results was successfully performed by Western blot analysis of DJ-1 protein. This study will not only help to understand the neurochemical responses produced under microgravity but also will give future direction to cure the proteomic losses and their after effects in astronauts.
机译:微重力严重中断了宇航员的结构和功能性大脑能力,特别是由于头液移位产生的压力而影响其大脑。我们采用了大鼠尾巴悬吊模型来证实大脑中的模拟微重力(SM)。在这项研究中,应用了比较质谱法来证明17种特定细胞防御蛋白的差异表达。 γ-烯醇酶,肽基脯氨酰顺反异构酶A,神经胶质原纤维酸性蛋白,热休克蛋白HSP 90-alpha,10 kDa热激蛋白,线粒体,热休克同源71 kDa蛋白,超氧化物歧化酶1和二氢嘧啶酶相关蛋白2发现它们被HPLC / ESI-TOF上调。此外,发现五个差异表达的蛋白质,包括60 kDa热休克蛋白,线粒体,热休克蛋白HSP 90-beta,peroxiredoxin-2,应激诱导的磷酸蛋白和UCHL-1被HPLC / ESI-Q-TOF上调。多发性硬化症。此外,下调的蛋白质包括细胞色素C,超氧化物歧化酶2,体细胞和兴奋性氨基酸转运蛋白1和蛋白质DJ-1。 MS结果的有效性通过DJ-1蛋白的Western印迹分析成功进行。这项研究不仅将有助于了解在微重力作用下产生的神经化学反应,而且还将为治疗蛋白质组学损失及其在宇航员中的后遗症提供未来的方向。

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