Department of Biomedical Sciences, Heritage College of Osteopathic Medicine, Ohio University, Athens, OH 45701, USA.
The Diabetes Institute, Ohio University, Athens, OH 45701, USA.
Endocrinology. 2023 Sep 23;164(11). doi: 10.1210/endocr/bqad151.
In adipose tissue, growth hormone (GH) stimulates lipolysis, leading to an increase in plasma free fatty acid levels and a reduction in insulin sensitivity. In our previous studies, we have found that GH increases lipolysis by reducing peroxisome proliferator-activated receptor γ (PPARγ) transcription activity, leading to a reduction of tat-specific protein 27 (FSP27, also known as CIDEC) expression. In previous studies, our laboratory uncovered 3 developmentally distinct subpopulations of white adipocytes. In this manuscript, we show that one of the subpopulations, termed type 2 adipocytes, has increased GH-induced signaling and lipolysis compared to other adipocyte subtypes. To assess the physiological role of GH-mediated lipolysis mediated by this adipocyte subpopulation, we specifically expressed human FSP27 (hFSP27) transgene in type 2 adipocytes (type2Ad-hFSP27tg mice). Systemically, male type2Ad-hFSP27tg mice displayed reduced serum glycerol release and nonesterified fatty acids levels after acute GH treatment, and improvement in acute, but not chronic, GH-induced glucose intolerance. Furthermore, we demonstrate that type2Ad-hFSP27tg mice displayed improved hepatic insulin signaling. Taken together, these results indicate that this adipocyte subpopulation is a critical regulator of the GH-mediated lipolytic and metabolic response. Thus, further investigation of adipocyte subpopulations may provide novel treatment strategies to regulate GH-induced glucose intolerance in patients with growth and metabolic disorders.
在脂肪组织中,生长激素(GH)刺激脂肪分解,导致血浆游离脂肪酸水平升高和胰岛素敏感性降低。在我们之前的研究中,我们发现 GH 通过降低过氧化物酶体增殖物激活受体 γ(PPARγ)转录活性来增加脂肪分解,导致 tat 特异性蛋白 27(FSP27,也称为 CIDEC)表达减少。在之前的研究中,我们的实验室发现了三种不同发育阶段的白色脂肪细胞亚群。在本手稿中,我们表明,其中一个亚群,称为 2 型脂肪细胞,与其他脂肪细胞亚型相比,GH 诱导的信号转导和脂肪分解增加。为了评估这种脂肪细胞亚群介导的 GH 介导的脂肪分解的生理作用,我们专门在 2 型脂肪细胞(type2Ad-hFSP27tg 小鼠)中表达了人 FSP27(hFSP27)转基因。在系统水平上,雄性 type2Ad-hFSP27tg 小鼠在急性 GH 处理后血清甘油释放和非酯化脂肪酸水平降低,并且急性但不是慢性 GH 诱导的葡萄糖不耐受得到改善。此外,我们证明 type2Ad-hFSP27tg 小鼠显示出改善的肝胰岛素信号。总之,这些结果表明,这种脂肪细胞亚群是 GH 介导的脂肪分解和代谢反应的关键调节剂。因此,进一步研究脂肪细胞亚群可能为调节生长和代谢紊乱患者的 GH 诱导的葡萄糖不耐受提供新的治疗策略。