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C 型利钠肽是代谢稳态的关键调节因子。

C-type natriuretic peptide is a pivotal regulator of metabolic homeostasis.

机构信息

William Harvey Research Institute, Barts & The London School of Medicine & Dentistry, Queen Mary University of London, London EC1M 6BQ, United Kingdom.

Blizard Institute and the National Centre for Bowel Research, Barts & The London School of Medicine & Dentistry, Queen Mary University of London, London E1 2AT, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2022 Mar 29;119(13):e2116470119. doi: 10.1073/pnas.2116470119. Epub 2022 Mar 25.

Abstract

Thermogenesis and adipogenesis are tightly regulated mechanisms that maintain lipid homeostasis and energy balance; dysfunction of these critical processes underpins obesity and contributes to cardiometabolic disease. C-type natriuretic peptide (CNP) fulfills a multimodal protective role in the cardiovascular system governing local blood flow, angiogenesis, cardiac function, and immune cell reactivity. Herein, we investigated a parallel, preservative function for CNP in coordinating metabolic homeostasis. Global inducible CNP knockout mice exhibited reduced body weight, higher temperature, lower adiposity, and greater energy expenditure in vivo. This thermogenic phenotype was associated with increased expression of uncoupling protein-1 and preferential lipid utilization by mitochondria, a switch corroborated by a corresponding diminution of insulin secretion and glucose clearance. Complementary studies in isolated murine and human adipocytes revealed that CNP exerts these metabolic regulatory actions by inhibiting sympathetic thermogenic programming via Gi-coupled natriuretic peptide receptor (NPR)-C and reducing peroxisome proliferator-activated receptor-γ coactivator-1α expression, while concomitantly driving adipogenesis via NPR-B/protein kinase-G. Finally, we identified an association between CNP/NPR-C expression and obesity in patient samples. These findings establish a pivotal physiological role for CNP as a metabolic switch to balance energy homeostasis. Pharmacological targeting of these receptors may offer therapeutic utility in the metabolic syndrome and related cardiovascular disorders.

摘要

产热和脂肪生成是紧密调节的机制,可维持脂质稳态和能量平衡;这些关键过程的功能障碍是肥胖的基础,并导致代谢心血管疾病。C 型利钠肽(CNP)在调节局部血流、血管生成、心脏功能和免疫细胞反应的心血管系统中发挥着多模式的保护作用。在此,我们研究了 CNP 在协调代谢稳态方面的平行保护功能。全身诱导型 CNP 敲除小鼠表现出较低的体重、较高的体温、较低的肥胖程度和较高的能量消耗。这种产热表型与解偶联蛋白-1 的表达增加和线粒体优先利用脂质有关,这一转变与胰岛素分泌和葡萄糖清除相应减少相符。在分离的小鼠和人脂肪细胞中的补充研究表明,CNP 通过 Gi 偶联的利钠肽受体(NPR)-C 抑制交感神经产热编程,并降低过氧化物酶体增殖物激活受体-γ 共激活因子-1α 的表达,从而发挥这些代谢调节作用,同时通过 NPR-B/蛋白激酶-G 促进脂肪生成。最后,我们在患者样本中发现了 CNP/NPR-C 表达与肥胖之间的关联。这些发现确立了 CNP 作为一种代谢开关来平衡能量稳态的重要生理作用。这些受体的药理学靶向可能为代谢综合征和相关心血管疾病提供治疗效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5172/9060477/d063db40be22/pnas.2116470119fig01.jpg

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