星形胶质细胞Fabp7调节小鼠大脑夜间癫痫阈值和活动依赖基因表达。

IF 2.2 Q2 MULTIDISCIPLINARY SCIENCES
PNAS nexus Pub Date : 2025-05-07 eCollection Date: 2025-05-01 DOI:10.1093/pnasnexus/pgaf146
Micah Lefton, Carlos C Flores, Yuji Owada, Christopher J Davis, Thomas N Ferraro, Yool Lee, Wheaton L Schroeder, Jason R Gerstner
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引用次数: 0

摘要

癫痫发作常随一天中的时间和/或警觉性状态的变化而变化;然而,具体的分子和细胞机制驱动的关键和时间关联是缺乏的。星形胶质细胞是一种已知的调节神经元兴奋性和昼夜节律的胶质细胞。这些细胞还大量表达脂肪酸结合蛋白7 (Fabp7),这是一种生物钟驱动的分子,对正常睡眠调节、脂质信号传导和基因转录都是必需的。为了确定Fabp7是否影响时间依赖性癫痫易感性,我们使用电休克发作阈值测试了雄性C57/BL6N野生型(WT)和Fabp7敲除(KO)小鼠。与WT小鼠相比,Fabp7 KO小鼠在黑暗阶段表现出明显更高的一般和最大电休克发作阈值(分别为GESTs和MESTs),而在光明阶段则没有。我们利用RNA-seq技术确定了Fabp7在夜间癫痫发作中活动依赖性基因表达中的作用,并比较了WT-MEST和Fabp7 KO-MEST小鼠与WT-SHAM和Fabp7 KO-SHAM小鼠在黑暗期皮质/海马组织中全基因组mRNA的表达。与WT-SHAM相比,WT-MEST中直接早期基因的表达存在显著差异,而Fabp7 KO-MEST与Fabp7 KO-SHAM中这种影响被阻断。各组基因本体论和通路分析显示,WT- mest:WT- sham与Fabp7 KO- sham:WT- sham比较存在显著的重叠,提示Fabp7 KO脑内核心分子和细胞机制的基础mRNA水平接近WT阳性脑。综上所述,这些数据表明Fabp7调节了依赖于时间的神经兴奋性,神经活动可能与星形胶质细胞Fabp7介导的信号级联相互作用,从而影响依赖于活动的基因表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Astrocyte Fabp7 modulates nocturnal seizure threshold and activity-dependent gene expression in mouse brain.

Epileptic seizures often track with time of day and/or changes in vigilance state; however, specific molecular and cellular mechanisms driving the ictal and temporal associations are lacking. Astrocytes are a type of glial cell known to modulate neuronal excitability and circadian rhythms. These cells also abundantly express fatty acid-binding protein 7 (Fabp7), a clock-driven molecule necessary for normal sleep regulation, lipid signaling, and gene transcription. To determine whether Fabp7 influences time-of-day-dependent seizure susceptibility, we tested male C57/BL6N wild-type (WT) and Fabp7 knockout (KO) mice using electroshock seizure threshold. Compared with WT mice, Fabp7 KO mice exhibited markedly higher general- and maximal-electroshock seizure thresholds (GESTs and MESTs, respectively) during the dark phase, but not the light phase. We used RNA-seq to determine the role of Fabp7 in activity-dependent gene expression in nocturnal seizures and compared genome-wide mRNA expression in cortical/hippocampal tissue collected from WT-MEST and Fabp7 KO-MEST mice with WT-SHAM and Fabp7 KO-SHAM mice during the dark period. Whereas significant differential expression of immediate early genes was observed in WT-MEST compared with WT-SHAM, this effect was blocked in the Fabp7 KO-MEST versus Fabp7 KO-SHAM. Gene ontology and pathway analysis of all groups revealed significant overlap between WT-MEST:WT-SHAM and Fabp7 KO-SHAM:WT-SHAM comparisons, suggesting basal mRNA levels of core molecular and cellular mechanisms in the brain of Fabp7 KO approximate postictal WT brain. Together, these data suggest that Fabp7 regulates time-of-day-dependent neural excitability and that neural activity likely interacts with astrocyte Fabp7-mediated signaling cascades to influence activity-dependent gene expression.

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