星形胶质细胞
神经科学
心理学
眶额皮质
前额叶皮质
中枢神经系统
认知
作者
Sasha L. Fulton,Jaroslav Bendl,G. Salvo,John F. Fullard,Amni Al-Kachak,Ashley E. Lepack,Andrew F. Stewart,Sumnima Singh,Wolfram C. Poller,Ryan M. Bastle,Mads E. Hauberg,Amanda K. Fakira,Vishwendra Patel,Min Chen,Romain Durand-de Cuttoli,Isabel Gameiro‐Ros,Flurin Cathomas,Aarthi Ramakrishnan,Kelly Gleason,Li Shen
出处
期刊:Neuron
[Cell Press]
日期:2025-06-13
卷期号:113 (16): 2656-2672.e13
被引量:5
标识
DOI:10.1016/j.neuron.2025.05.023
摘要
Heightened activity in the orbitofrontal cortex (OFC), a brain region that contributes to motivation, emotion, and reward-related decision-making, is a key clinical feature of major depressive disorder (MDD). However, the cellular and molecular substrates underlying this dysfunction remain unclear. Here, we performed cell-type-specific profiling of human OFC and unexpectedly mapped MDD-linked epigenomic features (including genetic risk variants) to non-neuronal cells, revealing significant glial dysregulation in this region. Characterization of MDD-specific chromatin loci further identified ZBTB7A-a transcriptional regulator of astrocyte reactivity-as an important mediator of MDD-related alterations. In rodent models, we found that Zbtb7a induction in astrocytes is both necessary and sufficient to drive stress-mediated behavioral deficits, cell-type-specific transcriptional/epigenomic signatures, and aberrant OFC astrocyte-neuronal communication in male mice-an established MDD risk factor. These findings thus highlight essential roles for astrocytes in OFC-mediated stress susceptibility and identify ZBTB7A as a critical and therapeutically relevant regulator of MDD-related OFC dysfunction.
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