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Updated: Jan 17, 2026

Electroconvulsive Seizures in Rats and Fractionation of Their Hippocampi to Examine Seizure-induced Changes in Postsynaptic Density Proteins
Published on: August 15, 2017
TCF7L2 transcriptionally regulates C1QB to exacerbate synaptic pruning-dependent neuronal injury in the epileptic
Lulu Wu1, Yuping Huang2, Xinyu Wang1
1Department of Pediatrics, The First Affiliated Hospital of Nanjing Medical University, Guangzhou Road 300, Nanjing 210029, China.
Abstract:
Epilepsy represents one of the most prevalent and debilitating chronic neurological disorders. While the complement component 1q subcomponent B (C1QB) has been implicated in synaptic pruning and is associated with various neurological diseases, including epilepsy, the transcriptional regulatory mechanisms of the C1QB gene in epilepsy remain poorly understood. Here, we identified transcription factor 7-like 2 (TCF7L2) as a novel upstream transcriptional regulator of C1QB gene. Chromatin immunoprecipitation (ChIP) and luciferase reporter assays confirmed the direct binding of TCF7L2 to the C1QB promoter region and its positive regulatory effect on C1QB expression in vitro. Using a kainic acid-induced epilepsy model in male C57BL/6 mice, we demonstrated a significant upregulation of both Tcf7l2 and C1qb in the hippocampal region, which was accompanied by microglial activation and neuronal damage. Notably, the lentivirus-mediated specific knockdown of Tcf7l2 effectively reversed the overexpression of C1qb, attenuated microglial activation, and ameliorated neuronal injury in epileptic mice. Our study establishes the TCF7L2-C1QB regulatory axis and demonstrates its pathogenic role in epilepsy, suggesting that targeting this pathway may offer a novel therapeutic strategy for epilepsy treatment.
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