Life Sciences Institute and Department of Cell & Developmental Biology, University of Michigan Medical Center, Ann Arbor, Michigan, USA.
Children's Nutrition Research Center, Department of Pediatrics and Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas, USA.
JCI Insight. 2018 Mar 8;3(5):98522. doi: 10.1172/jci.insight.98522.
Neuregulins (NRGs) are emerging as an important family of signaling ligands that regulate glucose and lipid homeostasis. NRG1 lowers blood glucose levels in obese mice, whereas the brown fat-enriched secreted factor NRG4 protects mice from high-fat diet-induced insulin resistance and hepatic steatosis. However, the therapeutic potential of NRGs remains elusive, given the poor plasma half-life of the native ligands. Here, we engineered a fusion protein using human NRG1 and the Fc domain of human IgG1 (NRG1-Fc) that exhibited extended half-life in circulation and improved potency in receptor signaling. We evaluated its efficacy in improving metabolic parameters and dissected the mechanisms of action. NRG1-Fc treatment triggered potent AKT activation in the liver, lowered blood glucose, improved insulin sensitivity, and suppressed food intake in obese mice. NRG1-Fc acted as a potent secretagogue for the metabolic hormone FGF21; however, the latter was largely dispensable for its metabolic effects. NRG1-Fc directly targeted the hypothalamic POMC neurons to promote membrane depolarization and increase firing rate. Together, NRG1-Fc exhibits improved pharmacokinetic properties and exerts metabolic benefits through dual inhibition of hepatic gluconeogenesis and caloric intake.
神经调节蛋白(NRGs)是一类新兴的信号配体家族,可调节葡萄糖和脂质稳态。NRG1 可降低肥胖小鼠的血糖水平,而富含棕色脂肪的分泌因子 NRG4 可防止高脂肪饮食诱导的胰岛素抵抗和肝脂肪变性。然而,鉴于天然配体的血浆半衰期较差,NRGs 的治疗潜力仍难以捉摸。在这里,我们使用人 NRG1 和人 IgG1 的 Fc 结构域(NRG1-Fc)构建了融合蛋白,该融合蛋白在循环中具有延长的半衰期,并提高了受体信号转导的效力。我们评估了其改善代谢参数的功效,并剖析了其作用机制。NRG1-Fc 处理可在肝脏中引发强烈的 AKT 激活,降低血糖,提高胰岛素敏感性,并抑制肥胖小鼠的摄食量。NRG1-Fc 可作为代谢激素 FGF21 的有效分泌剂;然而,后者在很大程度上对其代谢作用是可有可无的。NRG1-Fc 可直接靶向下丘脑 POMC 神经元,促进膜去极化并增加放电频率。总之,NRG1-Fc 具有改善的药代动力学特性,并通过双重抑制肝糖异生和热量摄入来发挥代谢益处。