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Transcriptome bioinformatic analysis identifies potential therapeutic mechanism of pentylenetetrazole in down syndrome

机译:转录组生物信息学分析确定了戊四氮对唐氏综合症的潜在治疗机制

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Background Pentylenetetrazole (PTZ) has recently been found to ameliorate cognitive impairment in rodent models of Down syndrome (DS). The mechanism underlying PTZ's therapeutic effect in DS is however not clear. Microarray profiling has previously reported differential expression, both up- and down-regulation, of genes in DS. Given this, transcriptomic data related to PTZ treatment, if available, could be used to understand the drug's therapeutic mechanism in DS. No such mammalian data however exists. Nevertheless, a Drosophila model inspired by PTZ induced kindling plasticity in rodents has recently been described. Microarray profiling has shown PTZ's downregulatory effect on gene expression in the fly heads. Methods In a comparative transcriptomics approach, I have analyzed the available microarray data in order to identify potential therapeutic mechanism of PTZ in DS. In the analysis, summary data of up- and down-regulated genes reported in human DS studies and of down-regulated genes reported in the Drosophila model has been used. Results I find that transcriptomic correlate of chronic PTZ in Drosophila counteracts that of DS. Genes downregulated by PTZ significantly over-represent genes upregulated in DS and under-represent genes downregulated in DS. Further, the genes which are common in the downregulated and upregulated DS set show enrichment for MAP kinase pathway. Conclusion My analysis suggests that downregulation of MAP kinase pathway may mediate therapeutic effect of PTZ in DS. Existing evidence implicating MAP kinase pathway in DS supports this observation.
机译:背景技术最近发现戊四唑(PTZ)可改善唐氏综合症(DS)啮齿动物模型中的认知障碍。然而,尚不清楚PTZ在DS中的治疗作用的潜在机制。以前,微阵列分析报道了DS中基因的差异表达,包括上调和下调。鉴于此,可以使用与PTZ治疗有关的转录组数据(如果有的话)来了解DS中药物的治疗机制。但是,没有这样的哺乳动物数据。然而,最近已经描述了一种由PTZ激发的啮齿类动物可燃性的果蝇模型。微阵列分析表明PTZ对蝇头中基因表达的下调作用。方法在比较转录组学方法中,我分析了可用的微阵列数据,以鉴定DS中PTZ的潜在治疗机制。在分析中,使用了在人类DS研究中报告的上调和下调基因以及在果蝇模型中报告的下调基因的摘要数据。结果我发现果蝇中慢性PTZ的转录组相关性抵消了DS的转录组相关性。被PTZ下调的基因明显代表了DS中上调的基因,而代表了DS中下调的基因。此外,在下调和上调的DS集中常见的基因显示出丰富的MAP激酶途径。结论我的分析表明,MAP激酶途径的下调可能介导了PTZ在DS中的治疗作用。 DS中涉及MAP激酶途径的现有证据支持这一观察。

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