Li Lai-Fu, Li Zi-Lin, Song Bai-Lin, Jiang Yi, Wang Yan, Zou Hua-Wei, Yao Lun-Guang, Liu Ying-Juan
Henan Key Laboratory of Insect Biology in Funiu Mountain, Henan International Joint Laboratory of Insect Biology, College of Life Science and Agricultural Engineering, Nanyang Normal University, Nanyang 473061, Henan, China.
Research Center of Henan Provincial Agricultural Biomass Resource Engineering and Technology, College of Life Science and Agriculture, Nanyang Normal University, Nanyang 473061, Henan, China.
Curr Zool. 2022 Nov 7;69(6):682-693. doi: 10.1093/cz/zoac087. eCollection 2023 Dec.
Social hierarchy greatly influences behavior and health. Both human and animal studies have signaled the medial prefrontal cortex (mPFC) as specifically related to social hierarchy. Dopamine D1 receptors (D1Rs) and D2 receptors (D2Rs) are abundantly expressed in the mPFC, modulating its functions. However, it is unclear how DR-expressing neurons in the mPFC regulate social hierarchy. Here, using a confrontation tube test, we found that most adult C57BL/6J male mice could establish a linear social rank after 1 week of cohabitation. Lower rank individuals showed social anxiety together with decreased serum testosterone levels. D2R expression was significantly downregulated in the dorsal part of mPFC (dmPFC) in lower rank individuals, whereas D1R expression showed no significant difference among the rank groups in the whole mPFC. Virus knockdown of D2Rs in the dmPFC led to mice being particularly prone to lose the contests in the confrontation tube test. Finally, simultaneous D2R activation in the subordinates and D2R inhibition in the dominants in a pair switched their dominant-subordinate relationship. The above results indicate that D2Rs in the dmPFC play an important role in social dominance. Our findings provide novel insights into the divergent functions of prefrontal D1Rs and D2Rs in social dominance, which may contribute to ameliorating social dysfunctions along with abnormal social hierarchy.
社会等级制度对行为和健康有很大影响。人类和动物研究均表明,内侧前额叶皮质(mPFC)与社会等级制度存在特定关联。多巴胺D1受体(D1Rs)和D2受体(D2Rs)在mPFC中大量表达,调节其功能。然而,尚不清楚mPFC中表达DR的神经元如何调节社会等级制度。在此,我们通过对抗管测试发现,大多数成年C57BL/6J雄性小鼠在同居1周后可建立线性社会等级。等级较低的个体表现出社交焦虑,同时血清睾酮水平降低。等级较低个体的mPFC背侧部分(dmPFC)中D2R表达显著下调,而在整个mPFC中,各等级组之间D1R表达无显著差异。dmPFC中D2Rs的病毒敲低导致小鼠在对抗管测试中特别容易输掉竞争。最后,一对小鼠中,下属的D2R激活与主导者的D2R抑制同时进行,会使它们的主导-从属关系发生转变。上述结果表明,dmPFC中的D