Zhang Fang, Icyuz Mert, Liu Zhenghui, Fitch Michael, Sun Liou Y
Department of Biology, University of Alabama at Birmingham, Birmingham, AL 35254, USA.
Department of Obstetrics and Gynecology, University of Colorado, Anschutz Medical Campus, Aurora, CO 80045, USA.
Aging (Albany NY). 2020 Jul 8;12(18):18033-18051. doi: 10.18632/aging.103588.
Our previous studies showed that loss-of-function mutation of growth hormone releasing hormone (GHRH) results in increased longevity and enhanced insulin sensitivity in mice. However, the details of improved insulin action and tissue-specific insulin signaling are largely unknown in this healthy-aging mouse model. We conducted hyperinsulinemic-euglycemic clamp to investigate mechanisms underlying enhanced insulin sensitivity in growth hormone (GH) deficient mice. Further, we assessed tissue-specific insulin activity via activation of PI3K-AKT and MAPK-ERK1/2 cascades using western blot. Clamp results showed that the glucose infusion rate required for maintaining euglycemia was much higher in GHRH mice compared to WT controls. Insulin-mediated glucose production was largely suppressed, whereas glucose uptake in skeletal muscle and brown adipose tissue were significant enhanced in GHRH mice compared to WT controls. Enhanced capacity of insulin-induced activation of the PI3K-AKT and MAPK-ERK1/2 signaling were observed in a tissue-specific manner in GHRH mice. Enhanced systemic insulin sensitivity in long-lived GHRH mice is associated with differential activation of insulin signaling cascades among various organs. Improved action of insulin in the insulin sensitive tissues is likely to mediate the prolonged longevity and healthy-aging effects of GH deficiency in mice.
我们之前的研究表明,生长激素释放激素(GHRH)功能丧失突变会导致小鼠寿命延长和胰岛素敏感性增强。然而,在这个健康衰老的小鼠模型中,胰岛素作用改善和组织特异性胰岛素信号传导的细节在很大程度上尚不清楚。我们进行了高胰岛素-正常血糖钳夹实验,以研究生长激素(GH)缺乏小鼠胰岛素敏感性增强的潜在机制。此外,我们通过蛋白质印迹法激活PI3K-AKT和MAPK-ERK1/2级联反应来评估组织特异性胰岛素活性。钳夹实验结果显示,与野生型对照组相比,GHRH小鼠维持正常血糖所需的葡萄糖输注率要高得多。胰岛素介导的葡萄糖生成受到很大抑制,而与野生型对照组相比,GHRH小鼠骨骼肌和棕色脂肪组织中的葡萄糖摄取显著增强。在GHRH小鼠中,以组织特异性方式观察到胰岛素诱导的PI3K-AKT和MAPK-ERK1/2信号激活能力增强。长寿的GHRH小鼠全身胰岛素敏感性增强与各器官胰岛素信号级联反应的差异激活有关。胰岛素在胰岛素敏感组织中的作用改善可能介导了小鼠GH缺乏导致的寿命延长和健康衰老效应。