Hypothalamic P62 (SQSTM1) regulates energy balance by modulating leptin signaling
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Li, Y
Tian, M
Deng, W
Liu, D
Chen, C
Zhu, Z
Zheng, H
Yang, G
Li, L
Yang, M
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Abstract
Rationale: The multifaceted functions of p62 (SQSTM1) are increasingly recognized, but its role in hypothalamic metabolism-associated neurons for energy balance has yet to be elucidated. Methods: Single-nucleus RNA sequencing (snRNA-Seq) was performed on hypothalamic tissues from db/db and db/m mice to explore p62 expression. Overexpression and knockout of p62 in hypothalamic POMC neurons were performed via AAV-mediated gene delivery and Cre-loxP systems. Metabolic outcomes were assessed under normal chow (NCD) and high-fat diet (HFD) conditions. The co-immunoprecipitation and luciferase reporter assays were used to investigate the interaction between p62 and STAT3. Results: The snRNA-Seq analysis found that p62 was ubiquitously expressed in hypothalamic neurons, with significantly higher levels in POMC neurons of db/db mice compared to db/m controls. Under NCD or HFD conditions, the absence of p62 in POMC neurons led to increased body weight, decreased energy expenditure and leptin sensitivity, while its overexpression in POMC neurons produced the opposite phenotype. Mechanistically, p62 interacts with STAT3, facilitating its phosphorylation to initiate POMC transcription and amplify leptin sensitivity. Conclusion: This study demonstrated the capacity of p62 to monogenically regulate the obesity phenotype and emphasized its dual role in managing energy homeostasis through direct modulation of STAT3/POMC signaling and amplification of leptin sensitivity.
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Theranostics
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14
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17
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© The author(s). This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
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Oncology and carcinogenesis
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Yang, S; Li, Y; Tian, M; Deng, W; Liu, D; Chen, C; Zhu, Z; Zheng, H; Yang, G; Li, L; Yang, M, Hypothalamic P62 (SQSTM1) regulates energy balance by modulating leptin signaling, Theranostics, 2024, 14 (17), pp. 6605-6624