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Comparative proteomes change and possible role in different pathways of microRNA-21a-5p in a mouse model of spinal cord injury

机译:比较蛋白质素在脊髓损伤的小鼠模型中的MicroRNA-21a-5p的不同途径中的变化和可能的作用

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Our previous study found that microRNA-21a-5p (miR-21a-5p) knockdown could improve the recovery of motor function after spinal cord injury in a mouse model, but the precise molecular mechanism remains poorly understood. In this study, a modified Allen’s weight drop was used to establish a mouse model of spinal cord injury. A proteomics approach was used to understand the role of differential protein expression with miR-21a-5p knockdown, using a mouse model of spinal cord injury without gene knockout as a negative control group. We found that after introducing miR-21a-5p knockdown, proteins that played an essential role in the regulation of inflammatory processes, cell protection against oxidative stress, cell redox homeostasis, and cell maintenance were upregulated compared with the negative control group. Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis identified enriched pathways in both groups, such as the oxidative phosphorylation pathway, which is relevant to Parkinson’s disease, Huntington’s disease, Alzheimer’s disease, and cardiac muscle contraction. We also found that miR-21a-5p could be a potential biomarker for amyotrophic lateral sclerosis, as miR-21a-5p becomes deregulated in this pathway. These results indicate successful detection of some important proteins that play potential roles in spinal cord injury. Elucidating the relationship between these proteins and the recovery of spinal cord injury will provide a reference for future research of spinal cord injury biomarkers. All experimental procedures and protocols were approved by the Experimental Animal Ethics Committee of Shandong University of China on March 5, 2014.
机译:我们以前的研究发现,MicroRNA-21A-5P(MIR-21A-5P)敲低可以改善小鼠模型中脊髓损伤后电机功能的回收,但精确的分子机制仍然明白。在这项研究中,用于建立脊髓损伤的小鼠模型的改良艾伦的重量下降。蛋白质组学方法用于了解差异蛋白表达与miR-21a-5p敲低的作用,使用脊髓损伤的小鼠模型,没有基因敲除作为阴性对照组。我们发现在引入miR-21a-5p敲低后,与阴性对照组相比,在对炎症过程调节中发挥着基本作用的蛋白质,对氧化应激,细胞氧化还原性稳态和细胞维持进行了细胞保护。京都基因和基因组途径富集分析鉴定了两组的富集途径,例如氧化磷酸化途径,与帕金顿氏病,亨廷顿疾病,阿尔茨海默病和心肌收缩相关。我们还发现miR-21a-5p可以是肌营养侧面硬化的潜在生物标志物,因为MiR-21a-5p在该途径中造成危险。这些结果表明,成功地检测一些在脊髓损伤中发挥潜在作用的重要蛋白质。阐明这些蛋白质之间的关系和脊髓损伤的恢复将为脊髓损伤生物标志物的未来研究提供参考。 2014年3月5日,中国山东大学实验动物伦理委员会批准了所有实验程序和议定书。

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