加巴能
神经科学
生物
计算机科学
神经网络
神经元
海马体
解剖
γ-氨基丁酸
抑制性突触后电位
作者
Li Zhang,Mengbing Huang,Chao-Liang Ye,Zhiwei Tang,Mingrui Xu,Yuan WANG,Ting Wang,Shu Luo,Rui Ji,Chang Yu,Hongyan Luo,Peng Cao,Qingfeng Wu,Man Jiang
标识
DOI:10.1038/s41467-026-69955-3
摘要
Humans and animals memorize and recognize familiar conspecifics during social interactions, known as social memory. While the hippocampus is crucial for social memory, the dynamic regulation of social memory remains unclear. Here, using male mice, we identified two molecularly distinct subpopulations of GABAergic neurons in the mouse lateral septum (LS) expressing somatostatin (SST) and calbindin 1 (CB), respectively, with complementary distribution patterns. Activation of SST+ neurons enhances social memory acquisition, whereas activation of CB+ neurons inhibits it. Optogenetic manipulation of SST+ neurons regulates theta oscillations, correlating with their impact on social memory. SST+-dLS neurons and CB+-vLS neurons preferentially receive stronger excitatory inputs from the dorsal (vCA1d) and ventral (vCA1v) parts of vCA1, respectively. Functionally, the vCA1d→SST+-dLS→lateral hypothalamic area (LHA) circuit promotes social memory acquisition, whereas the vCA1v→CB+-vLS→anterior hypothalamic nucleus (AHN) pathway suppresses it. This study uncovers two parallel neural circuits underpinning the dynamic regulation of social memory in male mice. Neural mechanisms underlying social behavior are not fully understood. Here authors show two lateral septum neuron types in male mice that bidirectionally regulate social memory via distinct hippocampal-hypothalamic circuits.
科研通智能强力驱动
Strongly Powered by AbleSci AI