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外源性 GLP-1 可刺激三羧酸循环,并抑制禁食后期北象海豹幼崽的糖异生和酮生成。

Exogenous GLP-1 stimulates TCA cycle and suppresses gluconeogenesis and ketogenesis in late-fasted northern elephant seals pups.

机构信息

Department of Molecular & Cell Biology, School of Natural Sciences, University of California, Merced, California.

Department of Nutrition and Exercise Physiology, University of Missouri, Columbia, Missouri.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2021 Apr 1;320(4):R393-R403. doi: 10.1152/ajpregu.00211.2020. Epub 2021 Jan 6.

Abstract

The postweaning fast of northern elephant seal pups is characterized by a lipid-dependent metabolism and associated with a decrease in plasma glucagon-like peptide-1 (GLP-1), insulin, and glucose and increased gluconeogenesis (GNG) and ketogenesis. We have also demonstrated that exogenous GLP-1 infusion increased plasma insulin despite simultaneous increases in cortisol and glucagon, which collectively present contradictory regulatory stimuli of GNG, ketogenesis, and glycolysis. To assess the effects of GLP-1 on metabolism using primary carbon metabolite profiles in late-fasted seal pups, we dose-dependently infused late-fasted seals with low (LDG; 10 pM/kg; = 3) or high (HDG; 100 pM/kg; = 4) GLP-1 immediately following a glucose bolus (0.5 g/kg), using glucose without GLP-1 as control ( = 5). Infusions were performed in similarly aged animals 6-8 wk into their postweaning fast. The plasma metabolome was measured from samples collected at five time points just prior to and during the infusions, and network maps constructed to robustly evaluate the effects of GLP-1 on primary carbon metabolism. HDG increased key tricarboxylic acid (TCA) cycle metabolites, and decreased phosphoenolpyruvate and acetoacetate ( < 0.05) suggesting that elevated levels of GLP-1 promote glycolysis and suppress GNG and ketogenesis, which collectively increase glucose clearance. These GLP-1-mediated effects on cellular metabolism help to explain why plasma GLP-1 concentrations decrease naturally in fasting pups as an evolved mechanism to help conserve glucose during the late-fasting period.

摘要

新生北象海豹幼崽的断乳后禁食期以脂类依赖的代谢为特征,伴随着血浆胰高血糖素样肽-1 (GLP-1)、胰岛素和葡萄糖水平降低,以及糖异生 (GNG) 和酮体生成增加。我们还证明,外源性 GLP-1 输注会增加血浆胰岛素,尽管同时会增加皮质醇和胰高血糖素,这两者共同呈现出 GNG、酮体生成和糖酵解的相反调节刺激。为了评估 GLP-1 对晚期禁食海豹幼崽中主要碳代谢物谱的代谢影响,我们以剂量依赖的方式在葡萄糖冲击 (0.5 g/kg) 后立即给晚期禁食的海豹低剂量 (LDG; 10 pM/kg; = 3) 或高剂量 (HDG; 100 pM/kg; = 4) 输注 GLP-1,用没有 GLP-1 的葡萄糖作为对照 ( = 5)。输注在它们断乳后禁食 6-8 周龄的相似年龄动物中进行。在输注前和输注期间从五个时间点采集的样本中测量血浆代谢组,并构建网络图谱以稳健地评估 GLP-1 对主要碳代谢的影响。HDG 增加了关键的三羧酸 (TCA) 循环代谢物,降低了磷酸烯醇丙酮酸和乙酰乙酸 ( < 0.05),这表明升高的 GLP-1 水平促进糖酵解并抑制 GNG 和酮体生成,这共同增加了葡萄糖清除率。GLP-1 对细胞代谢的这些调节作用有助于解释为什么在禁食幼崽中,血浆 GLP-1 浓度会自然下降,这是一种在晚期禁食期间帮助节约葡萄糖的进化机制。

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