From the Department of Medicine, Columbia University, New York (S.S., W.D., J.A.Z., L.O.).
Regeneron Pharmaceuticals, Inc, Tarrytown, NY (H.O., J.G.).
Circ Res. 2019 Jan 4;124(1):38-51. doi: 10.1161/CIRCRESAHA.118.313648.
Glucagon is a key hormone that regulates the adaptive metabolic responses to fasting. In addition to maintaining glucose homeostasis, glucagon participates in the regulation of cholesterol metabolism; however, the molecular pathways underlying this effect are incompletely understood.
We sought to determine the role of hepatic Gcgr (glucagon receptor) signaling in plasma cholesterol regulation and identify its underlying molecular mechanisms.
We show that Gcgr signaling plays an essential role in LDL-C (low-density lipoprotein cholesterol) homeostasis through regulating the PCSK9 (proprotein convertase subtilisin/kexin type 9) levels. Silencing of hepatic Gcgr or inhibition of glucagon action increased hepatic and plasma PCSK9 and resulted in lower LDLR (LDL receptor) protein and increased plasma LDL-C. Conversely, treatment of wild-type (WT) mice with glucagon lowered LDL-C levels, whereas this response was abrogated in Pcsk9 and Ldlr mice. Our gain- and loss-of-function studies identified Epac2 (exchange protein activated by cAMP-2) and Rap1 (Ras-related protein-1) as the downstream mediators of glucagon's action on PCSK9 homeostasis. Moreover, mechanistic studies revealed that glucagon affected the half-life of PCSK9 protein without changing the level of its mRNA, indicating that Gcgr signaling regulates PCSK9 degradation.
These findings provide novel insights into the molecular interplay between hepatic glucagon signaling and lipid metabolism and describe a new posttranscriptional mechanism of PCSK9 regulation.
胰高血糖素是一种调节空腹适应代谢反应的关键激素。除了维持血糖稳态外,胰高血糖素还参与胆固醇代谢的调节;然而,其作用的分子途径尚不完全清楚。
我们试图确定肝 Gcgr(胰高血糖素受体)信号在血浆胆固醇调节中的作用,并确定其潜在的分子机制。
我们表明,Gcgr 信号通过调节 PCSK9(脯氨酸羧肽酶/丝氨酸蛋白酶 9)水平在 LDL-C(低密度脂蛋白胆固醇)稳态中发挥重要作用。沉默肝 Gcgr 或抑制胰高血糖素作用增加肝和血浆 PCSK9,导致 LDLR(低密度脂蛋白受体)蛋白降低和血浆 LDL-C 增加。相反,用胰高血糖素处理野生型(WT)小鼠可降低 LDL-C 水平,而在 Pcsk9 和 Ldlr 小鼠中,这种反应被阻断。我们的功能获得和功能丧失研究确定了 Epac2(cAMP-2 激活的交换蛋白)和 Rap1(Ras 相关蛋白-1)作为胰高血糖素对 PCSK9 稳态作用的下游介质。此外,机制研究表明,胰高血糖素影响 PCSK9 蛋白的半衰期而不改变其 mRNA 水平,表明 Gcgr 信号调节 PCSK9 降解。
这些发现为肝胰高血糖素信号与脂质代谢之间的分子相互作用提供了新的见解,并描述了 PCSK9 调节的新的转录后机制。