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Time-dependent changes in gene expression induced by secreted amyloid precursor protein-alpha in the rat hippocampus

机译:大鼠海马中分泌的淀粉样前体蛋白-α诱导的基因表达的时间依赖性变化

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Background Differential processing of the amyloid precursor protein liberates either amyloid-?, a causative agent of Alzheimer’s disease, or secreted amyloid precursor protein-alpha (sAPPα), which promotes neuroprotection, neurotrophism, neurogenesis and synaptic plasticity. The underlying molecular mechanisms recruited by sAPPα that underpin these considerable cellular effects are not well elucidated. As these effects are enduring, we hypothesised that regulation of gene expression may be of importance and examined temporally specific gene networks and pathways induced by sAPPα in rat hippocampal organotypic slice cultures. Slices were exposed to 1 nM sAPPα or phosphate buffered saline for 15 min, 2 h or 24 h and sAPPα-associated gene expression profiles were produced for each time-point using Affymetrix Rat Gene 1.0 ST arrays (moderated t-test using Limma: p? Results Treatment of organotypic hippocampal slice cultures with 1 nM sAPPα induced temporally distinct gene expression profiles, including mRNA and microRNA associated with Alzheimer’s disease. Having demonstrated that treatment with human recombinant sAPPα was protective against N-methyl D -aspartate-induced toxicity, we next explored the sAPPα-induced gene expression profiles. Ingenuity Pathway Analysis predicted that short-term exposure to sAPPα elicited a multi-level transcriptional response, including upregulation of immediate early gene transcription factors (AP-1, Egr1), modulation of the chromatin environment, and apparent activation of the constitutive transcription factors CREB and NF-κB. Importantly, dynamic regulation of NF-κB appears to be integral to the transcriptional response across all time-points. In contrast, medium and long exposure to sAPPα resulted in an overall downregulation of gene expression. While these results suggest commonality between sAPPα and our previously reported analysis of plasticity-related gene expression, we found little crossover between these datasets. The gene networks formed following medium and long exposure to sAPPα were associated with inflammatory response, apoptosis, neurogenesis and cell survival; functions likely to be the basis of the neuroprotective effects of sAPPα. Conclusions Our results demonstrate that sAPPα rapidly and persistently regulates gene expression in rat hippocampus. This regulation is multi-level, temporally specific and is likely to underpin the neuroprotective effects of sAPPα.
机译:背景淀粉样蛋白前体蛋白的差异加工可释放出阿尔茨海默氏病的病原体淀粉样蛋白-或分泌的淀粉样蛋白前体蛋白-α(sAPPα),从而促进神经保护,神经营养,神经发生和突触可塑性。尚未充分阐明支持这些显着细胞效应的sAPPα募集的潜在分子机制。由于这些作用持续存在,我们假设基因表达的调控可能很重要,并研究了大鼠海马器官切片培养物中sAPPα诱导的时间特异性基因网络和途径。将切片暴露于1 nMsAPPα或磷酸盐缓冲液中15分钟,2小时或24小时,并使用Affymetrix Rat Gene 1.0 ST阵列在每个时间点生成sAPPα相关的基因表达谱(使用Limma进行t检验:p结果用1 nMsAPPα处理器官型海马切片培养物会诱导时间上不同的基因表达谱,包括与阿尔茨海默氏病有关的mRNA和microRNA,证明用人重组sAPPα处理能抵抗N-甲基D-天冬氨酸诱导的毒性,聪明才智分析(Ingenuity Pathway Analysis)预测,短期接触sAPPα会引起多层次的转录反应,包括上调立即早期基因转录因子(AP-1,Egr1),调节染色质环境。并明显激活组成性转录因子CREB和NF-κB。重要的是,出现了NF-κB的动态调节o在所有时间点上都是转录反应的组成部分。相反,中长期暴露于sAPPα会导致基因表达的总体下调。虽然这些结果表明sAPPα与我们先前报道的可塑性相关基因表达的分析之间具有共同点,但我们发现这些数据集之间几乎没有交叉。中长期暴露于sAPPα后形成的基因网络与炎症反应,细胞凋亡,神经发生和细胞存活有关。功能可能是sAPPα的神经保护作用的基础。结论我们的结果表明sAPPα能够快速,持续地调节大鼠海马中的基因表达。这种调节是多层次的,在时间上特定的,并且可能加强sAPPα的神经保护作用。

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