ATP Release Deficiency through Astrocytic Connexin 43 in the Dorsal Hippocampus Promotes Depressive- and Anxiety-Like Behaviors
Abstract
Depression is a common psychiatric disorder, and increasing evidence implicates the dysregulation of extracellular ATP and hippocampal dysfunction in its pathophysiology. However, whether ATP release is involved in depression and mechanisms underlying this involvement remains unclear. Moreover, the basis for the comorbidity of depression and anxiety disorders remains unclear. In our study, we observed reduced connexin 43 (Cx43) and extracellular ATP levels in the dorsal hippocampus but not ventral hippocampus of susceptible adult male mice exposed to chronic social defeat stress. Conditional knock-out of astrocytic Cx43 or its specific knockdown in dorsal hippocampal astrocytes led to depressive- and anxiety-like behaviors, whereas neuronal knock-out of Cx43 had no effect on these behaviors. These deficits were accompanied by decreased extracellular ATP levels, while supplementation with exogenous ATPγS reversed these behavioral deficits. We further identified Cx43 as a critical regulator of ATP release and a modulator of astrocytic network connectivity and morphology. Notably, overexpression of Cx43 combined with the inhibition of ATP-degrading enzymes in the dorsal hippocampus restored ATP levels and ameliorated behavioral deficits. Taken together, our results demonstrate that deficiency of ATP release from dorsal hippocampal astrocytes leads to depressive- and anxiety-like behaviors, primarily through Cx43. These findings shed new light on the mechanisms by which ATP regulates depression and anxiety pathogenesis and the role of dorsal hippocampus in depression and anxiety, providing potential therapeutic targets for treating these comorbid disorders.
Article Details
Authors (18)
Meng-Ling Wang
Jian Hu
Yue-Xin Wang
Xiao-Tong Lian
Yun-Long Song
Ding-Yu Wu
Jia-Yue Du
Hao Li
Xing-Xing Xiong
Zi-Ming Li
Jing-Ting Li
Yun-Shu Wang
Jia-Yu Hu
Xiao-Wen Li
Jian-Ming Yang
Xiang-Dong Sun
Yi-Hua Chen
Tian-Ming Gao