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Updated: Oct 14, 2025

Methods for the Modulation and Analysis of NF-κB-dependent Adult Neurogenesis
Published on: February 13, 2014
Disorder Genes Regulate the Progression of Ischemic Stroke through the NF-κB Signaling Pathway
Wei Wei1, Wenqiang Xin2, Yufeng Tang1
1Department of Neurology, Mianyang Central Hospital, Mianyang 621000, China.
Insights
This study identifies key genes and signaling pathways involved in ischemic stroke progression. NFKB1 and SP1 are highlighted as potential regulators, with the NFKB signaling pathway promoting inflammation in stroke.
Area of Science:
- Neuroscience
- Genomics
- Bioinformatics
Background:
- Stroke is a leading cause of death globally, necessitating research into its molecular mechanisms.
- Understanding the genetic factors influencing stroke is crucial for developing effective treatments.
Purpose of the Study:
- To identify key genes and regulatory pathways implicated in the progression of ischemic stroke.
- To analyze transcriptome data from mouse models to uncover molecular mechanisms of stroke.
Main Methods:
- Utilized GEO database for transcriptome data from ischemic stroke and normal mouse models.
- Performed differential gene expression, coexpression network analysis, and enrichment analysis.
- Employed bioinformatics tools for transcription factor and noncoding RNA regulator prediction.
Main Results:
- Identified 5103 differentially expressed genes between 24h and 72h post-ischemic stroke.
- Discovered critical genes ASTL, Zfp472, Fmr1, and Nap1l1 within functional modules.
- Highlighted ncRNA metabolism, microRNAs in cancer, and amino acid biosynthesis pathways.
- Identified NFKB1 and SP1 as critical regulators potentially driving ischemic stroke progression via the NFKB signaling pathway.
Conclusions:
- NFKB1 and SP1 are pivotal regulators in ischemic stroke.
- The NFKB signaling pathway plays a significant role in stroke-induced inflammation and progression.
Abstract:
Stroke is an acute cerebrovascular disease, including ischemic and hemorrhagic stroke. Stroke is the second leading cause of death after ischemic heart disease, which accounts for 9% of the global death toll. To explore the molecular mechanisms of the effects of the dysregulated factors, in the GEO database, we obtained transcriptome data from 24 h/72 h of mice with ischemic stroke and 24 h/72 h of normal mice. We then performed differential gene analysis, coexpression analysis, enrichment analysis, and regulator prediction bioinformatics analysis to identify the potential genes. We made a comparison between the ischemic stroke 72 h and the ischemic stroke for 24 h, and 5103 differential genes were obtained (p < 0.05). Four functional barrier modules were obtained by weighted gene coexpression network analysis. The critical genes of each module were ASTL, Zfp472, Fmr1 gene, and Nap1l1. The results of the enrichment analysis showed ncRNA metabolism, microRNAs in cancer, and biosynthesis of amino acids. These three functions and pathways have the most considerable count value. The regulators of the regulatory dysfunction module were predicted by pivotal analysis of TF and noncoding RNA, and critical regulators including NFKB1 (NF-κB1), NFKBIA, CTNNB1, and SP1 were obtained. Finally, the pivotal target gene found that CTNNB1, NFKB1, NFKBia, and Sp1 are involved in 18, 32, 2, and 60 target genes, respectively. Therefore, we believe that NFKB1 and Sp1 have a potential role in the progression of ischemic stroke. The NFKB signaling pathway promotes inflammatory cytokines and regulates the progression of ischemic stroke.
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