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Astrocytic FKBP5 regulates neuroinflammation and cognitive outcomes in male mouse models of excitotoxic epilepsy

  • Yu Ling Gan
  • , Shang Hsuan Lin
  • , Yu Ping Kang
  • , Jia Zhen Zhou
  • , Wei Hsuan Huang
  • , Ping Hua Sung
  • , Chia Chi Hung
  • , Pei Chien Hsu
  • , Shu Yin Chu
  • , Feng Shiun Shie
  • , I. Hui Lee
  • , Chung Jiuan Jeng
  • , Yi Hsuan Lee*
  • *此作品的通信作者

研究成果: Article同行評審

摘要

FK506-binding protein 51 (FKBP51, encoded by FKBP5) is a multisignaling cochaperone that regulates cellular stress responses and inflammatory signaling through the NF-κB pathway. Although FKBP51 is upregulated in reactive astrocytes, its role in epilepsy and excitotoxic neuroinflammation remains unknown. Excessive astrogliosis and impaired glutamate transporter-1 (GLT-1)-mediated glutamate clearance promote excitotoxicity and increase seizure susceptibility. Here, we investigated how both global and astrocyte-specific Fkbp5 deletions influence seizure susceptibility, astrogliosis, neuroinflammation, and cognition in male mice subjected to a kainic acid (KA)-induced epilepsy mouse model. Global Fkbp5 knockout (Fkbp5 -KO) presented lower seizure activity along with decreased neuronal loss and astrogliosis in the hippocampus compared with the wild-type mice. Astrocyte-specific Fkbp5 conditional knockout (a Fkbp5 -cKO) mice similarly attenuated seizure severity, decreased astrogliosis, improved novel object recognition, and preserved GLT-1 expression in hippocampal CA3. Glia–neuron mixed cultures derived from Fkbp5 -KO brains showed reduced NMDA-induced neurotoxicity and astrogliosis, accompanied by decreased NF-κB p65 phosphorylation. Notably, overexpression of an Fkbp5 quadruple mutant that disrupts the FKBP51–NF-κB interaction inhibited proinflammatory lipopolysaccharide-induced astrogliosis and NF-κB activation. Transcriptomic analysis of Fkbp5 -KO hippocampi further confirmed suppression of NF-κB-driven inflammatory pathways. In summary, astrocytic FKBP51 mediates reactive astrogliosis and GLT-1 downregulation, linking excitotoxic neuroinflammation with seizure susceptibility and cognitive impairment, and represents a potential intervention target for epilepsy.

原文English
文章編號106278
期刊Brain, Behavior, and Immunity
133
DOIs
出版狀態Published - 3月 2026

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