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Vexin is upregulated in cerebral cortical neurons by brain‐derived neurotrophic factor

机译:通过脑衍生的神经营养因子在脑皮质神经元中上调vexin

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Aim Chromosome 8 open reading frame 46 (C8orf46), a human protein‐coding gene, has recently been named Vexin. A recent study indicated that Vexin is involved in embryonic neurogenesis. Additionally, some transcriptomic studies detected changes in the mRNA levels of patients with psychiatric and neurological diseases. In our previous study, we sought for target genes of brain‐derived neurotrophic factor (BDNF) in cultured rat cortical neurons, finding that BDNF potentially leads to the upregulation of Vexin mRNA. However, its underlying mechanisms are unknown. In the present study, we assessed the regulatory mechanisms of the BDNF‐induced gene expression of Vexin in vitro. Methods We reanalyzed ChIP‐seq data in various human organs provided by?the ENCODE project, evaluating acetylation levels of the 27th lysine residue of the histone H3 (H3K27ac) at the Vexin locus. The transcriptomic effects of BDNF on rat Vexin (RGD1561849) were evaluated by real‐time quantitative PCR (RT‐qPCR) in primary cultures of cerebral cortical neurons, in the presence or absence of inhibitors for signaling molecules activated by BDNF. Results The Vexin locus and its promoter region in the brain angular gyrus show higher acetylation levels of the H3K27 than those in other organs. Stimulation of cultured rat cortical neurons, but not astrocyte, with BDNF, led to marked elevations in the mRNA levels of Vexin, which was inhibited in the presence of K252a and U0126. Conclusion The upregulated H3K27ac in the brain may be associated with the enriched gene expression of Vexin in the brain. It is indicated that BDNF induces the gene expression of Vexin in the cortical neurons via the TrkB‐MEK signaling pathway.
机译:目的染色体8张开读数框架46(C8ORF46),一种人蛋白编码基因最近被命名为vexin。最近的一项研究表明,vexin参与胚胎神经发生。另外,一些转录组研究检测到精神病和神经疾病患者mRNA水平的变化。在我们以前的研究中,我们寻求培养的大鼠皮质神经元脑衍生的神经营养因子(BDNF)的靶基因,发现BDNF可能导致vexin mRNA的上调。然而,其潜在的机制是未知的。在本研究中,我们评估了体外BDNF诱导的vexin基因表达的调节机制。方法我们在各种人机中重新分解芯片-SEQ数据吗?编码项目,评估组蛋白H3(H3K27Ac)的第27次赖氨酸残基的乙酰化水平在葡夹毒素中。通过在脑皮质神经元的原代培养物中的实时定量PCR(RT-QPCR)在脑皮质神经元的主要培养物中,在BDNF激活的信号分子的存在或不存在的情况下,通过实时定量PCR(RT-QPCR)对大鼠vexin(RTGD151849)进行评估。结果脑角角波动中的vexin基因座及其启动子区域显示出比其他器官中的H3K27的乙酰化水平较高。刺激培养的大鼠皮质神经元,但不是BDNF的星形胶质细胞导致vexin的mRNA水平的显着升高,这在K252A和U0126存在下被抑制。结论大脑中的上调H3K27Ac可能与大脑中vexin的富集基因表达有关。表明BDNF通过Trkb-Mek信号通路诱导皮质神经元中vexin的基因表达。

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