ULK1 inhibits depressive behaviours by reversing RYR2-mediated hyperactivity in lateral habenula

Research has implicated disrupted autophagy initiation in the pathophysiology of depression. However, the role of Unc-51-like Kinase 1 (ULK1), a key regulator of autophagy initiation, in depression remains poorly understood. Here, using behavioural, molecular, and genetic approaches, we show that serum ULK1 levels are decreased in both patients with depression and mice susceptible to chronic social-defeat stress, and that both ULK1 and p-ULK1 (Ser-555) are downregulated in the lateral habenula (LHb) of susceptible mice. In addition, ULK1 deficiency in the LHb is sufficient to induce depressive-like behaviours in mice. Conversely, restoration of ULK1 in the LHb, either genetically or pharmacologically, produced antidepressant-like effects. Moreover, ULK1 deficiency specifically in LHb glutamatergic neurons induces neuronal hyperactivity, which contributes to ULK1 deficiency-induced depressive-like behaviours. Mechanistically, LHb glutamatergic neuron-specific ULK1 deficiency upregulates ryanodine receptor 2 (RYR2), which mediates increased stress-evoked presynaptic calcium transients, enhances presynaptic glutamatergic transmission, and neuronal hyperactivity in the LHb, ultimately resulting in depressive-like behaviours. Collectively, our findings suggest that ULK1 deficiency in LHb glutamatergic neurons may contribute to the development and progression of depression and identify ULK1 as a potential target for further investigation in antidepressant therapy development.

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Journal
Brain
Published
2026-09-08
DOI
https://doi.org/10.1093/brain/awag298
Primary Topic
Autophagy in Disease and Therapy
Type
article
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article

ULK1 inhibits depressive behaviours by reversing RYR2-mediated hyperactivity in lateral habenula

Ji‐chun Zhang, Oscar Junhong Luo, Pingjie Wang, Yanhua Huang et al.
Brain
Autophagy in Disease and Therapy
article

ULK1 inhibits depressive behaviours by reversing RYR2-mediated hyperactivity in lateral habenula

Ji‐chun Zhang, Oscar Junhong Luo, Pingjie Wang, Yanhua Huang, Ruijia Ma, Evandro Fei Fang, Nikias Siafarikas, Chaoran Ren, Boya Huang, Junfeng Li, Yuchao Li, Lu Huang, Ruizhe Sun, Wenghei Hong, He-Ling Wang, Guobing Chen, Qian Wang, Song Lin, Tormod Fladby, Xiaohan Tong, Yun Liu, Shilin He
article en

Abstract

Research has implicated disrupted autophagy initiation in the pathophysiology of depression. However, the role of Unc-51-like Kinase 1 (ULK1), a key regulator of autophagy initiation, in depression remains poorly understood. Here, using behavioural, molecular, and genetic approaches, we show that serum ULK1 levels are decreased in both patients with depression and mice susceptible to chronic social-defeat stress, and that both ULK1 and p-ULK1 (Ser-555) are downregulated in the lateral habenula (LHb) of susceptible mice. In addition, ULK1 deficiency in the LHb is sufficient to induce depressive-like behaviours in mice. Conversely, restoration of ULK1 in the LHb, either genetically or pharmacologically, produced antidepressant-like effects. Moreover, ULK1 deficiency specifically in LHb glutamatergic neurons induces neuronal hyperactivity, which contributes to ULK1 deficiency-induced depressive-like behaviours. Mechanistically, LHb glutamatergic neuron-specific ULK1 deficiency upregulates ryanodine receptor 2 (RYR2), which mediates increased stress-evoked presynaptic calcium transients, enhances presynaptic glutamatergic transmission, and neuronal hyperactivity in the LHb, ultimately resulting in depressive-like behaviours. Collectively, our findings suggest that ULK1 deficiency in LHb glutamatergic neurons may contribute to the development and progression of depression and identify ULK1 as a potential target for further investigation in antidepressant therapy development.

Brain
Ministry of Education of the People's Republic of China (CN), Jinan University (CN), University of Oslo (NO), Akershus University Hospital (NO), NeoPhotonics (United States) (US), NORCE Research AS (NO), Guangdong-Hongkong-Macau Joint Laboratory of Collaborative Innovation for Environmental Quality (CN), Jinan University (LB), Institute of Refrigeration (GB), First Affiliated Hospital of Zhengzhou University (CN), First Affiliated Hospital of Jinan University (CN)
Reduced inequalities
Openalex Percentile: Top 10%
Autophagy in Disease and Therapy
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