Department of Endocrinology and Metabolism, Graduate School of Medicine, Yokohama City University, Yokohama 236-0004, Japan.
Laboratory of Diabetes and Metabolic Disorders, Institute for Molecular and Cellular Regulation (IMCR), Gunma University, Maebashi 371-8510, Japan.
Int J Mol Sci. 2021 Jun 24;22(13):6817. doi: 10.3390/ijms22136817.
It has been well established that insulin-like growth factors (IGFs) mainly mediate long-term actions in cell fates, whereas insulin predominantly exerts its role on metabolic activity. Indeed, insulin mediates multiple anabolic biological activities in glucose and amino acid transport, lipid and protein synthesis, the induction of glycogen, the inhibition of gluconeogenesis, lipolysis, and protein degradation. The interactions and differences between insulin receptor signaling and IGF-I receptor signaling in the metabolism and the cell fates are quite complicated. Because of the overlapping actions of IGF-I singling with insulin signaling, it has been difficult to distinguish the role of both signaling mechanisms on the metabolism. Furthermore, comprehensive information on the IGF-I function in respective tissues remains insufficient. Therefore, we need to clarify the precise roles of IGF-I signaling on the metabolism separate from those of insulin signaling. This review focuses on the metabolic roles of IGFs in the respective tissues, especially in terms of comparison with those of insulin, by overviewing the metabolic phenotypes of tissue-specific IGF-I and insulin receptor knockout mice, as well as those in mice treated with the dual insulin receptor/IGF-I receptor inhibitor OSI-906.
已经证实,胰岛素样生长因子(IGFs)主要介导细胞命运的长期作用,而胰岛素主要发挥其代谢活性的作用。事实上,胰岛素介导葡萄糖和氨基酸转运、脂质和蛋白质合成、糖原诱导、糖异生抑制、脂肪分解和蛋白质降解等多种合成代谢生物活性。胰岛素受体信号和 IGF-I 受体信号在代谢和细胞命运中的相互作用和差异非常复杂。由于 IGF-I 信号与胰岛素信号的重叠作用,很难区分这两种信号机制在代谢中的作用。此外,关于 IGF-I 在各个组织中的功能的综合信息仍然不足。因此,我们需要澄清 IGF-I 信号在代谢中的精确作用,使其与胰岛素信号分离。本综述通过综述组织特异性 IGF-I 和胰岛素受体敲除小鼠以及用双重胰岛素受体/IGF-I 受体抑制剂 OSI-906 处理的小鼠的代谢表型,重点关注 IGFs 在各个组织中的代谢作用,特别是与胰岛素的比较。