A visual cortical-lateral posterior thalamic nucleus circuit regulates depressive-like behaviors in male mice.

Wu, Fangfang; Gu, Chenxi; Xu, Rui; Ma, Junwei; Gao, Lei; Zhang, Youjiao; Bu, Siyuan; Lu, Qingbo et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Depression, a prevalent psychiatric disorder of ambiguous etiology and high heterogeneity, has been recently linked to the primary visual cortex (V1). However, the precise circuits mediating the impact of V1 on depressive-like behaviors are poorly understood. Here, we demonstrate that the V1, specifically the lateral posterior nucleus of the thalamus (LP)-projecting V1 glutamatergic subpopulation (Glu<sup>V1→LP</sup> neurons), shows reduced activity after chronic restraint stress (CRS) in male mice, leading to depressive-like behaviors. Optogenetic or chemogenetic activation of these neurons ameliorated depressive-like behaviors in CRS-depressed mice, whereas reducing activity exacerbated these behaviors. This reduction in Glu<sup>V1→LP</sup> neurons activity was predominantly due to a decrease in the guanine nucleotide-binding protein subunit gamma-4 (Gγ4). Overexpression of Gγ4 in the Glu<sup>V1→LP</sup> neurons produced antidepressant-like effects, suggesting that Gγ4 is a crucial regulator of mood. Collectively, these results reveal a V1→LP circuit that modulates depressive-like behaviors, suggesting potential targets for therapeutic interventions.

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