CIRBP exerts neuroprotective effects in ischemic injury by inhibiting IFN-I signaling
Dang Tang, Jiang Long, Bibo Gao, Zhongkun Ren
Journal:LIFE SCIENCES
IF:6.4
DOI:10.1016/j.lfs.2026.124549
PMID:
Published:2026-06-23
research field:神经科学分子生物学生物信息学细胞生物学干细胞生物学遗传学与基因组学RNA生物学转录后调控缺血性脑损伤神经炎症
Abstract
BACKGROUND Ischemic brain injury (IBI) is a severe neurological disorder with poorly defined pathogenesis and limited treatments. Cold-inducible RNA-binding protein (CIRBP) mediates stress responses, yet its post-transcriptional regulatory role in IBI remains unclear. This study investigated CIRBP's function and mechanisms to provide IBI therapeutic insights. METHODS An oxygen-glucose deprivation/reoxygenation (OGD/R) model was established in differentiated PC12 cells to mimic IBI in vitro. CIRBP-overexpressing PC12 cells were constructed, and cell viability, apoptosis and oxidative stress were detected. RNA-seq identified CIRBP-regulated differentially expressed genes (DEGs) and alternative splicing (AS) events; PPI networks screened hub genes, and RIP-seq characterized CIRBP's RNA-binding profile. RESULTS CIRBP overexpression significantly attenuated OGD/R-induced neuronal damage by improving cell morphology, enhancing viability, reducing apoptosis and suppressing oxidative stress. RNA-seq revealed 114 CIRBP-regulated DEGs, with downregulated genes enriched in type I interferon (IFN-I) signaling and neuroinflammation; Oas2 was the core hub gene, with multiple IFN-I-related hub genes identified. CIRBP regulated 506 AS events (mainly IntronR, A5SS, A3SS) linked to axon extension and NF-κB regulation. RIP-seq showed CIRBP preferentially bound to CDS, Nc-exon and antisense regions, recognized miRNA-targeted motifs, and Prrc2b was a potential regulator of CIRBP-binding mRNAs. CONCLUSIONS CIRBP exerts neuroprotection in OGD/R models by inhibiting oxidative stress and IFN-I-related neuroinflammation, and regulating AS of IBI-associated genes. It has a distinct RNA-binding pattern and may crosstalk with miRNAs in post-transcriptional regulation, highlighting CIRBP as a potential therapeutic target and its regulated genes/AS events as promising IBI biomarkers.
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