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氧化的无细胞 DNA 迅速改变脑细胞的转录谱,促进神经发生和神经可塑性。

Oxidized Cell-Free DNA Rapidly Skews the Transcriptional Profile of Brain Cells toward Boosting Neurogenesis and Neuroplasticity.

机构信息

Research Centre for Medical Genetics (RCMG), 115478 Moscow, Russia.

Federal Research and Clinical Center of Intensive Care Medicine and Rehabilitology, V.A. Negovsky Research Institute of General Reanimatology, 107031 Moscow, Russia.

出版信息

Curr Issues Mol Biol. 2021 Oct 13;43(3):1583-1591. doi: 10.3390/cimb43030112.

Abstract

Cell-free DNA (cfDNA) is liberated and accumulated in neural tissue due to cell damage. The oxidative and nitrosative stress in the brain that accompanies various pathological conditions has been shown to increase the oxidation of cellular and cell-free DNA. Whether the high concentration of non-oxidized and oxidized cfDNA may affect the transcriptome response of brain cells has not been studied. In the current work, we studied whether cfDNA fragments affect several key pathways, including neurogenesis, at the level of gene expression in brain cells. In the study, primary rat cerebellum cell cultures were used to assess the effects of oxidized and non-oxidized cfDNA on the expression of 91 genes in brain cells. We found that only oxidized cfDNA, not non-oxidized cfDNA, significantly altered the transcription in brain cells in 3 h. The pattern of change included all 10 upregulated genes (, , , , , , , , , ) belonging to genes associated with neurogenesis and neuroplasticity. The expression of inflammatory and apoptosis genes, which oppose neurogenesis, decreased. The results show that the oxidized form of cfDNA positively regulates early gene expression of neurogenesis and neuroplasticity. At the same time, the question of whether chronic elevation of cfDNA concentration alters brain cells remains unexplored.

摘要

细胞外游离 DNA(cfDNA)由于细胞损伤而在神经组织中释放和积累。伴随各种病理状况的大脑中的氧化和硝化应激已被证明会增加细胞和细胞外游离 DNA 的氧化。高浓度的未氧化和氧化 cfDNA 是否会影响脑细胞的转录组反应尚未得到研究。在目前的工作中,我们研究了 cfDNA 片段是否会在脑细胞的基因表达水平上影响包括神经发生在内的几个关键途径。在研究中,使用原代大鼠小脑细胞培养物来评估氧化和未氧化 cfDNA 对脑细胞中 91 个基因表达的影响。我们发现,只有氧化 cfDNA,而不是未氧化 cfDNA,在 3 小时内显著改变了脑细胞的转录。变化的模式包括所有 10 个上调基因(、、、、、、、、、),这些基因都与神经发生和神经可塑性有关。相反促进神经发生的炎症和细胞凋亡基因的表达减少。研究结果表明,cfDNA 的氧化形式正向调节神经发生和神经可塑性的早期基因表达。同时,cfDNA 浓度的慢性升高是否会改变脑细胞的问题仍未得到探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dd3/8929019/459372d991aa/cimb-43-00112-g001.jpg

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