Zhao Zhe, Zeng Fengqingyang, Wang Hanbin, Wu Runlong, Chen Liping, Wu Yan, Li Shen, Shao Jingyuan, Wang Yao, Wu Junjie, Feng Zhiheng, Gao Weizheng, Hu Yanhui, Wang Aimin, Cheng Heping, Zhang Jue, Chen Liangyi, Wu Haitao
Department of Neurobiology, Beijing Institute of Basic Medical Sciences, 100850 Beijing, China.
College of Engineering, Peking University, 100871 Beijing, China.
Sci Adv. 2022 Sep 2;8(35):eabo4884. doi: 10.1126/sciadv.abo4884. Epub 2022 Aug 31.
Although the prelimbic (PrL) area is associated with social behaviors, the neural ensembles that regulate social preference toward novelty or familiarity remain unknown. Using miniature two-photon microscopy (mTPM) to visualize social behavior-associated neuronal activity within the PrL in freely behaving mice, we found that the Ca transients of GABAergic neurons were more highly correlated with social behaviors than those of glutamatergic neurons. Chemogenetic suppression of social behavior-activated GABAergic neurons in the PrL disrupts social novelty behaviors. Restoring the MeCP2 level in PrL GABAergic neurons in transgenic (-TG) mice rescues the social novelty deficits. Moreover, we identified and characterized sparsely distributed NewPNs and OldPNs of GABAergic interneurons in the PrL preferentially responsible for new and old mouse exploration, respectively. Together, we propose that social novelty information may be encoded by the responses of NewPNs and OldPNs in the PrL area, possibly via synergistic actions on both sides of the seesaw.
尽管前边缘(PrL)区域与社会行为有关,但调节对新奇或熟悉事物的社会偏好的神经集合仍然未知。利用微型双光子显微镜(mTPM)观察自由活动小鼠PrL内与社会行为相关的神经元活动,我们发现GABA能神经元的钙瞬变比谷氨酸能神经元的钙瞬变更与社会行为高度相关。对PrL中被社会行为激活的GABA能神经元进行化学遗传学抑制会破坏社会新奇行为。恢复转基因(-TG)小鼠PrL GABA能神经元中的MeCP2水平可挽救社会新奇缺陷。此外,我们鉴定并表征了PrL中GABA能中间神经元的稀疏分布的新神经元(NewPNs)和旧神经元(OldPNs),它们分别优先负责对新小鼠和旧小鼠的探索。总之,我们提出社会新奇信息可能由PrL区域中NewPNs和OldPNs的反应编码而成,可能是通过跷跷板两侧的协同作用。