Department of Endocrinology and Nutrition, Research Unit, Institut d'Investigació Sanitària Pere Virgili (IISPV), Hospital Universitari de Tarragona Joan XXIII, Tarragona 43005, Spain; CIBER de Diabetes y Enfermedades Metabólicas Asociadas (CIBERDEM), Instituto de Salud Carlos III, Madrid 28029, Spain.
Department of Endocrinology and Nutrition, Research Unit, Institut d'Investigació Sanitària Pere Virgili (IISPV), Hospital Universitari de Tarragona Joan XXIII, Tarragona 43005, Spain; CIBER de Diabetes y Enfermedades Metabólicas Asociadas (CIBERDEM), Instituto de Salud Carlos III, Madrid 28029, Spain; Department of Medicine and Surgery, Universitat Rovira i Virgili (URV), Reus 43201, Spain.
Cell Metab. 2023 Apr 4;35(4):601-619.e10. doi: 10.1016/j.cmet.2023.03.004. Epub 2023 Mar 27.
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.
脂肪组织通过分泌瘦素来调节能量稳态,但人们对控制瘦素产生的因素知之甚少。我们发现,琥珀酸长期以来被认为是免疫反应和脂肪分解的介质,通过其受体 SUCNR1 控制瘦素的表达。脂肪细胞特异性敲除 Sucnr1 会根据营养状况影响代谢健康。脂肪细胞 Sucnr1 缺乏会损害进食对瘦素的反应,而口服琥珀酸盐则通过 SUCNR1 模拟与营养相关的瘦素动态。SUCNR1 激活通过 AMPK/JNK-C/EBPα 依赖性的生物钟控制瘦素表达。尽管 SUCNR1 的抗脂肪分解作用在肥胖中占主导地位,但它作为瘦素信号调节剂的功能有助于在标准饮食条件下脂肪细胞特异性 Sucnr1 敲除小鼠中表现出代谢有利的表型。人类肥胖相关的高瘦素血症与脂肪细胞中 SUCNR1 的过表达有关,这是脂肪组织瘦素表达的主要预测因子。我们的研究确立了琥珀酸/SUCNR1 轴作为一种代谢物感应途径,介导与营养相关的瘦素动态,以控制全身稳态。