罗亚
肌动蛋白解聚因子
海马体
树突棘
生物
细胞生物学
海马结构
突触可塑性
肌动蛋白细胞骨架
信号转导
神经科学
细胞骨架
生物化学
细胞
受体
作者
Lvmei Li,Qiang Wang,Xiangping Sun,ZeLong Li,Shuwei Liu,Xian Zhang,Jinyu Zhou,Rui Zhang,Kunmei Liu,Peng Wang,Jianguo Niu,Yujun Wen,Lianxiang Zhang
标识
DOI:10.1016/j.ijbiomac.2023.123652
摘要
Neuropsychiatric diseases are related to early life stress (ELS), patients often have abnormal learning, memory and emotion. But the regulatory mechanism is unclear. Hippocampal synaptic plasticity (HSP) changes are important mechanism. RhoA pathway is known to regulate HSP by modulating of dendritic spines (DS), whether it's involved in HSP changes in ELS hasn't been reported. So we investigated whether and how RhoA participates in HSP regulation in ELS. The ELS model was established by separation-rearing in juvenile. Results of IntelliCage detection etc. showed simple learning and memory wasn't affected, but spatial, punitive learning and memories reduced, the desire to explore novel things reduced, the anxiety-like emotion increased. We further found hippocampus was activated, the hippocampal neurons dendritic complexities reduced, the proportion of mature DS decreased. The full-length transcriptome sequencing techniques was used to screen for differentially expressed genes involved in regulating HSP changes, we found RhoA gene was up-regulated. We detected RhoA protein, RhoA phosphorylation and downstream molecules expression changes, results shown RhoA and p-RhoA, p-ROCK2 expression increased, p-LIMK, p-cofilin expression and F-actin/G-actin ratio decreased. Our study revealed HSP changes in ELS maybe regulate by activation RhoA through ROCK2/LIMK/cofilin pathway regulated F-actin/G-actin balance and DS plasticity, affecting emotion and cognition.
科研通智能强力驱动
Strongly Powered by AbleSci AI