首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Assessment of Nuclear and Mitochondrial DNA Expression of Mitochondria-Related Genes in Different Brain Regions in Rats after Whole-Body X-ray Irradiation
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Assessment of Nuclear and Mitochondrial DNA Expression of Mitochondria-Related Genes in Different Brain Regions in Rats after Whole-Body X-ray Irradiation

机译:X射线全身照射后大鼠不同脑区线粒体DNA和线粒体相关基因表达的评估

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摘要

Studies of molecular changes occurred in various brain regions after whole-body irradiation showed a significant increase in terms of the importance in gaining insight into how to slow down or prevent the development of long-term side effects such as carcinogenesis, cognitive impairment and other pathologies. We have analyzed nDNA damage and repair, changes in mitochondrial DNA (mtDNA) copy number and in the level of mtDNA heteroplasmy, and also examined changes in the expression of genes involved in the regulation of mitochondrial biogenesis and dynamics in three areas of the rat brain (hippocampus, cortex and cerebellum) after whole-body X-ray irradiation. Long amplicon quantitative polymerase chain reaction (LA-QPCR) was used to detect nDNA and mtDNA damage. The level of mtDNA heteroplasmy was estimated using Surveyor nuclease technology. The mtDNA copy numbers and expression levels of a number of genes were determined by real-time PCR. The results showed that the repair of nDNA damage in the rat brain regions occurs slowly within 24 h; in the hippocampus, this process runs much slower. The number of mtDNA copies in three regions of the rat brain increases with a simultaneous increase in mtDNA heteroplasmy. However, in the hippocampus, the copy number of mutant mtDNAs increases significantly by the time point of 24 h after radiation exposure. Our analysis shows that in the brain regions of irradiated rats, there is a decrease in the expression of genes (ND2, CytB, ATP5O) involved in ATP synthesis, although by the same time point after irradiation, an increase in transcripts of genes regulating mitochondrial biogenesis is observed. On the other hand, analysis of genes that control the dynamics of mitochondria (Mfn1, Fis1) revealed that sharp decrease in gene expression level occurred, only in the hippocampus. Consequently, the structural and functional characteristics of the hippocampus of rats exposed to whole-body radiation can be different, most significantly from those of the other brain regions.
机译:对全身照射后大脑各个区域发生的分子变化的研究表明,对于深入了解如何减缓或防止长期副作用(如致癌作用,认知障碍和其他病理情况)的认识方面,重要性显着提高。我们已经分析了nDNA的损伤和修复,线粒体DNA(mtDNA)拷贝数的变化以及mtDNA异质性的水平,还研究了参与调节线粒体生物发生的基因表达的变化以及大鼠脑三个区域的动力学变化X射线全身照射后(海马,皮层和小脑)。长扩增子定量聚合酶链反应(LA-QPCR)用于检测nDNA和mtDNA损伤。使用Surveyor核酸酶技术评估mtDNA异质性水平。通过实时PCR确定mtDNA的拷贝数和许多基因的表达水平。结果表明,nDNA损伤在大鼠脑区域的修复在24 h内缓慢发生。在海马中,这个过程进行得慢得多。大鼠大脑三个区域的mtDNA拷贝数随着mtDNA异质性的同时增加而增加。然而,在海马中,在辐射暴露后24小时的时间点,突变mtDNA的拷贝数显着增加。我们的分析表明,在辐照大鼠的大脑区域中,参与ATP合成的基因(ND2,CytB,ATP5O)的表达有所降低,尽管在辐照后的同一时间点,调节线粒体的基因的转录本有所增加观察到生物发生。另一方面,对控制线粒体动力学的基因(Mfn1,Fis1)的分析显示,仅在海马体中发生了基因表达水平的急剧下降。因此,暴露于全身辐射的大鼠海马的结构和功能特性可能会有所不同,与其他大脑区域的最显着不同。

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