小鼠海马综合多组学分析揭示干扰素刺激基因通过PU.1调节因子在慢性脑灌注不足诱导的小胶质细胞激活中的转录上调

IF 10.7 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
MedComm Pub Date : 2025-04-15 DOI:10.1002/mco2.70157
Zengyu Zhang, Dewen Ru, Zhuohang Liu, Zimin Guo, Lei Zhu, Yuan Zhang, Min Chu, Yong Wang, Jing Zhao
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引用次数: 0

摘要

慢性脑灌注不足(CCH)是加速认知衰退的一个重要因素,但在这种情况下海马小胶质细胞激活的机制尚不清楚。利用综合多组学方法,我们研究了双侧颈总动脉狭窄诱导的CCH小鼠模型中小胶质细胞激活的转录和表观基因组景观。行为评估显示认知障碍,而神经病理分析证实海马损伤。蛋白质组学和转录组学分析揭示了应激和炎症途径的显著上调,特别是干扰素(IFN)信号级联。表观基因组学分析发现了开放染色质区域,表明转录因子(TF) PU.1驱动了主动转录调控。ChIP-nexus分析进一步证实,PU.1直接调节ifn刺激基因(ISGs)的表达,ISGs在调节小胶质细胞活化中起关键作用。我们的研究结果表明,PU.1在CCH期间作为ifn驱动的小胶质细胞反应的关键调节剂,通过增强染色质可及性和isg的转录激活介导。这项研究强调了PU.1在小胶质细胞介导的神经炎症中的关键作用,并为减轻慢性脑缺血相关的海马损伤提供了潜在的治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Integrative Multiomics Profiling of Mouse Hippocampus Reveals Transcriptional Upregulation of Interferon-Stimulated Genes Through PU.1 Regulator in Microglial Activation Induced by Chronic Cerebral Hypoperfusion

Integrative Multiomics Profiling of Mouse Hippocampus Reveals Transcriptional Upregulation of Interferon-Stimulated Genes Through PU.1 Regulator in Microglial Activation Induced by Chronic Cerebral Hypoperfusion

Chronic cerebral hypoperfusion (CCH) is a significant factor that accelerates cognitive deterioration, yet the mechanisms of hippocampal microglial activation in this context remain unclear. Using an integrative multiomics approach, we investigated the transcriptional and epigenomic landscape of microglial activation in a mouse model of CCH induced by bilateral common carotid artery stenosis. Behavioral assessments revealed cognitive impairments, while neuropathological analysis confirmed hippocampal damage. Proteomic and transcriptomic profiling uncovered significant upregulation of stress and inflammatory pathways, particularly the interferon (IFN) signaling cascade. Epigenomic analysis identified regions of open chromatin, suggesting active transcriptional regulation driven by the transcription factor (TF) PU.1. ChIP-nexus analysis further confirmed that PU.1 directly modulates the expression of IFN-stimulated genes (ISGs), which are pivotal in regulating microglial activation. Our findings demonstrate that PU.1 serves as a key regulator of the IFN-driven microglial response during CCH, mediated by enhanced chromatin accessibility and transcriptional activation of ISGs. This study highlights the critical role of PU.1 in microglial-mediated neuroinflammation and offers potential therapeutic targets for mitigating hippocampal damage associated with chronic cerebral ischemia.

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