瘦素
内分泌学
内科学
小鼠苗条素受体
脂肪组织
脂肪细胞
能量稳态
生物
脂肪因子
安普克
脂解
白色脂肪组织
生物钟
营养感应
昼夜节律
信号转导
细胞生物学
医学
肥胖
磷酸化
蛋白激酶A
作者
Teresa Villanueva-Carmona,Lídia Cedó,Ana Madeira,Victòria Ceperuelo‐Mallafré,M‐Mar Rodríguez‐Peña,Catalina Núñez‐Roa,Elsa Maymó‐Masip,Maria Repollés-de-Dalmau,Joan R. Badia,Noelia Keiran,Mercedes Mirasierra,Carolina Pimenta-Lopes,Joan Sabadell‐Basallote,Ramón Bosch,Laura Caubet,Joan Carles Escolà‐Gil,José Manuel Fernández‐Real,Núria Vilarrasa,Francesc Ventura,Mario Vallejo,Joan Vendrell,Sonia Fernández‐Veledo
出处
期刊:Cell Metabolism
[Elsevier]
日期:2023-03-27
卷期号:35 (4): 601-619.e10
被引量:28
标识
DOI:10.1016/j.cmet.2023.03.004
摘要
Adipose tissue modulates energy homeostasis by secreting leptin, but little is known about the factors governing leptin production. We show that succinate, long perceived as a mediator of immune response and lipolysis, controls leptin expression via its receptor SUCNR1. Adipocyte-specific deletion of Sucnr1 influences metabolic health according to nutritional status. Adipocyte Sucnr1 deficiency impairs leptin response to feeding, whereas oral succinate mimics nutrient-related leptin dynamics via SUCNR1. SUCNR1 activation controls leptin expression via the circadian clock in an AMPK/JNK-C/EBPα-dependent manner. Although the anti-lipolytic role of SUCNR1 prevails in obesity, its function as a regulator of leptin signaling contributes to the metabolically favorable phenotype in adipocyte-specific Sucnr1 knockout mice under standard dietary conditions. Obesity-associated hyperleptinemia in humans is linked to SUCNR1 overexpression in adipocytes, which emerges as the major predictor of adipose tissue leptin expression. Our study establishes the succinate/SUCNR1 axis as a metabolite-sensing pathway mediating nutrient-related leptin dynamics to control whole-body homeostasis.
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