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Identifying candidate genes associated with hippocampal dysfunction in a hemiparkinsonian rat model by transcriptomic profiling

机译:通过转录组学分析鉴定半帕金森大鼠模型中与海马功能障碍相关的候选基因

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摘要

Parkinson’s disease (PD) often results in hippocampal dysfunction, which leads to cognitive and emotional challenges and synaptic irregularities. This study attempted to assess behavioral anomalies and identify differentially expressed genes (DEGs) within the hippocampus of a hemiparkinsonian rat model to potentially uncover novel genetic candidates linked to hippocampal dysfunction. Striatal 6-hydroxydopamine (6-OHDA) infusions were performed unilaterally in the brains of adult SD rats, while dopaminergic impairments were verified in rats with 6-OHDA-lesioned striata. RNA sequencing and gene expression analysis unveiled 1018 DEGs in the ipsilateral rat hippocampus following 6-OHDA infusion: 631 genes exhibited upregulation, while 387 genes were downregulated (with FDR-adjusted p-value 1.5). Gene ontology analysis of DEGs indicated that alterations in the hippocampi of 6-OHDA-lesioned rats were primarily associated with synaptic signaling, axon development, behavior, postsynaptic membrane, synaptic membrane, neurotransmitter receptor activity, and peptide receptor activity. The Kyoto Encyclopedia of Genes and Genomes analysis of DEGs demonstrated significant enrichment of the neuroactive ligand–receptor interaction, calcium signaling pathway, cAMP signaling pathway, axon guidance, and notch signaling pathway in rat hippocampi that had been subjected to striatal 6-OHDA infusion. STRING analysis confirmed a notable upregulation of eight hub genes (Notch3, Gng4, Itga3, Grin2d, Hgf, Fgf11, Htr3a, and Col6a2), along with a significant downregulation of two hub genes (Itga11 and Plp1), as validated by reverse transcription-quantitative polymerase chain reaction. This study provides a comprehensive transcriptomic profile of the hippocampi in a hemiparkinsonian rat model, thereby offering insights into the signaling pathways underlying hippocampal dysfunction.
机译:帕金森病 (PD) 通常会导致海马功能障碍,从而导致认知和情绪挑战以及突触不规则。本研究试图评估行为异常并识别半帕金森大鼠模型海马内的差异表达基因 (DEG),以潜在地发现与海马功能障碍相关的新遗传候选基因。纹状体 6-羟基多巴胺 (6-OHDA) 输注在成年 SD 大鼠的大脑中单侧进行,而在 6-OHDA 损伤纹状体大鼠中验证了多巴胺能损伤。RNA 测序和基因表达分析揭示了输注 6-OHDA 后同侧大鼠海马体中的 1018 个 DEGs:631 个基因表现出上调,而 387 个基因下调(FDR 校正的 p 值 1.5)。DEGs 的基因本体分析表明,6-OHDA 损伤大鼠海马体的改变主要与突触信号传导、轴突发育、行为、突触后膜、突触膜、神经递质受体活性和肽受体活性有关。京都基因和基因组百科全书对 DEGs 的分析表明,在接受纹状体 6-OHDA 输注的大鼠海马中,神经活性配体-受体相互作用、钙信号通路、cAMP 信号通路、轴突导向和 Notch 信号通路显著富集。STRING 分析证实了 8 个枢纽基因 (Notch3 、 Gng4 、 Itga3 、 Grin2d 、 Hgf 、 Fgf11 、 Htr3a 和 Col6a2 )的显著上调,以及 2 个枢纽基因 (Itga11 和 Plp1) 的显著下调,逆转录-定量聚合酶链反应证实了这一点。本研究提供了半帕金森大鼠模型中海马体的全面转录组学概况,从而为海马功能障碍的信号通路提供了见解。

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