IL-6 Enhances the Activation of PI3K-AKT/mTOR-GSK-3β by Upregulating GRPR in Hippocampal Neurons of Autistic Mice.

Heli Li, Xinyuan Wang, Cong Hu, Jinru Cui, Hao Li, Xiaoping Luo, Yan Hao
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Abstract

Autism spectrum disorder (ASD) is a neurological disorder associated with brain inflammation. The underlying mechanisms could be attributed to the activation of PI3K signaling in the inflamed brain of ASD. Multiple studies highlight the role of GRPR in regulating ASD like abnormal behavior and enhancing the PI3K signaling. However, the molecular mechanism by which GRPR regulates PI3K signaling in neurons of individuals with ASD is still unclear. In this study, we utilized a maternal immune activation model to investigate the effects of GRPR on PI3K signaling in the inflamed brain of ASD mice. We used HT22 cells with and without GRPR to examine the impact of GRP-GRPR on the PI3K-AKT pathway with IL-6 treatment. We analyzed a dataset of hippocampus samples from ASD mice to identify hub genes. Our results demonstrated increased expression of IL-6, GRPR, and PI3K-AKT signaling in the hippocampus of ASD mice. Additionally, we observed increased GRPR expression and PI3K-AKT/mTOR activation in HT22 cells after IL-6 treatment, but decreased expression in HT22 cells with GRPR knockdown. NetworkAnalyst identified GSK-3β as the most crucial gene in the PI3K-AKT/mTOR pathway in the hippocampus of ASD. Furthermore, we found that IL-6 upregulated the expression of GSK-3β in HT22 cells by upregulating GRP-GRPR. Our findings suggest that IL-6 can enhance the activation of PI3K-AKT/mTOR-GSK-3β in hippocampal neurons of ASD mice by upregulating GRPR.

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IL-6 通过上调自闭症小鼠海马神经元中的 GRPR,增强 PI3K-AKT/mTOR-GSK-3β 的激活。
自闭症谱系障碍(ASD)是一种与脑部炎症有关的神经系统疾病。其根本机制可能是自闭症谱系障碍的大脑炎症激活了 PI3K 信号传导。多项研究强调了 GRPR 在调节类似 ASD 的异常行为和增强 PI3K 信号传导中的作用。然而,GRPR 在 ASD 患者神经元中调节 PI3K 信号的分子机制仍不清楚。在本研究中,我们利用母体免疫激活模型来研究 GRPR 对 ASD 小鼠脑部炎症中 PI3K 信号转导的影响。我们使用含有和不含 GRPR 的 HT22 细胞来研究 GRP-GRPR 在 IL-6 处理下对 PI3K-AKT 通路的影响。我们分析了 ASD 小鼠的海马样本数据集,以确定枢纽基因。我们的研究结果表明,在 ASD 小鼠的海马中,IL-6、GRPR 和 PI3K-AKT 信号的表达均有所增加。此外,我们还观察到IL-6处理后,HT22细胞中GRPR表达和PI3K-AKT/mTOR激活增加,但敲除GRPR的HT22细胞中表达减少。NetworkAnalyst 发现 GSK-3β 是 ASD 海马中 PI3K-AKT/mTOR 通路中最关键的基因。此外,我们还发现 IL-6 通过上调 GRP-GRPR 上调了 HT22 细胞中 GSK-3β 的表达。我们的研究结果表明,IL-6可通过上调GRP增强PI3K-AKT/mTOR-GSK-3β在ASD小鼠海马神经元中的激活。
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