谷氨酸的
前脑
神经科学
生物
海马体
转录因子
背景(考古学)
TCF4型
表型
遗传学
基因
中枢神经系统
谷氨酸受体
增强子
受体
古生物学
作者
Lotte van Doeselaar,Alexandra Abromeit,Tibor Štark,Danusa Menegaz,Markus Ballmann,Shiladitya Mitra,Huanqing Yang,Ghalia Rehawi,Rosa-Eva Huettl,Joeri Bordes,Sowmya Narayan,Daniela Harbich,Jan M. Deussing,Gerhard Rammes,Michael Czisch,Janine Arloth,Matthias Eder,Juan Pablo López,Mathias V. Schmidt
标识
DOI:10.1038/s41467-025-57952-x
摘要
Abstract Early life stress (ELS) can increase vulnerability to psychiatric disorders, but also trigger resilience. FKBP51 has been associated with an increased risk for developing psychiatric disorders, specifically in interaction with ELS exposure. Here, the contribution of FKBP51 in glutamatergic forebrain neurons to the long-term consequences of ELS was investigated in both sexes. In female wild-type Fkbp5 lox/lox mice, ELS exposure led to an anxiolytic phenotype and improved memory performance in a stressful context, however this ELS effect was absent in Fkbp5 Nex mice. These interactive FKBP51 x ELS effects in female mice were also reflected in reduced brain region volumes, and on structural and electrophysiological properties of CA1 pyramidal neurons of the dorsal hippocampus. In contrast, the behavioral, structural and functional effects in male ELS mice were less pronounced and independent of FKBP51. RNA sequencing of the hippocampus revealed the transcription factor 4 (TCF4) as a potential regulator of the female interactive effects. Cre-dependent viral overexpression of TCF4 in female Nex-Cre mice led to similar beneficial effects on behavior as the ELS exposure. This study demonstrates a sex-specific role for FKBP51 in mediating the adaptive effects of ELS on emotional regulation, cognition, and neuronal function, implicating TCF4 as a downstream effector.
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