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Central nervous system gene expression changes in a transgenic mouse model for bovine spongiform encephalopathy

机译:牛海绵状脑病转基因小鼠模型中枢神经系统基因表达的变化

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摘要

Gene expression analysis has proven to be a very useful tool to gain knowledge of the factors involved in the pathogenesis of diseases, particularly in the initial or preclinical stages. With the aim of finding new data on the events occurring in the Central Nervous System in animals affected with Bovine Spongiform Encephalopathy, a comprehensive genome wide gene expression study was conducted at different time points of the disease on mice genetically modified to model the bovine species brain in terms of cellular prion protein. An accurate analysis of the information generated by microarray technique was the key point to assess the biological relevance of the data obtained in terms of Transmissible Spongiform Encephalopathy pathogenesis. Validation of the microarray technique was achieved by RT-PCR confirming the RNA change and immunohistochemistry techniques that verified that expression changes were translated into variable levels of protein for selected genes. Our study reveals changes in the expression of genes, some of them not previously associated with prion diseases, at early stages of the disease previous to the detection of the pathological prion protein, that might have a role in neuronal degeneration and several transcriptional changes showing an important imbalance in the Central Nervous System homeostasis in advanced stages of the disease. Genes whose expression is altered at early stages of the disease should be considered as possible therapeutic targets and potential disease markers in preclinical diagnostic tool development. Genes non-previously related to prion diseases should be taken into consideration for further investigations.
机译:基因表达分析已被证明是一种非常有用的工具,可用于了解疾病发病机理中涉及的因素,尤其是在临床初期或临床前阶段。为了找到有关患牛海绵状脑病的动物在中枢神经系统中发生的事件的新数据,在疾病的不同时间点对转基因小鼠进行了全面的全基因组基因表达研究,以对牛物种的大脑进行建模就细胞蛋白而言。对通过微阵列技术产生的信息进行准确的分析是评估就传染性海绵状脑病发病机理而言所获得数据的生物学相关性的关键。通过RT-PCR确认RNA的变化和免疫组织化学技术对微阵列技术进行了验证,该技术验证了表达变化已转化为所选基因可变水平的蛋白质。我们的研究揭示了基因表达的变化,其中一些以前与病毒疾病不相关,在疾病的早期阶段,在检测到病理性ion病毒蛋白之前,可能与神经元变性有关,并且一些转录变化显示疾病晚期中枢神经系统动态平衡的重要失衡。在临床早期诊断工具开发中,应将其表达在疾病早期改变的基因视为可能的治疗靶标和潜在疾病标志物。与以前与diseases病毒疾病无关的基因应考虑用于进一步研究。

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