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IGF-I、IGF-II 和胰岛素通过与 IGF-I 受体结合刺激不同的基因表达反应。

IGF-I, IGF-II, and Insulin Stimulate Different Gene Expression Responses through Binding to the IGF-I Receptor.

机构信息

Receptor Systems Biology Laboratory, Hagedorn Research Institute, Novo Nordisk A/S , Gentofte , Denmark.

出版信息

Front Endocrinol (Lausanne). 2013 Aug 9;4:98. doi: 10.3389/fendo.2013.00098. eCollection 2013.

Abstract

Insulin and the insulin-like growth factors (IGF)-I and -II are closely related peptides important for regulation of metabolism, growth, differentiation, and development. The IGFs exert their main effects through the IGF-I receptor. Although the insulin receptor is the main physiological receptor for insulin, this peptide hormone can also bind at higher concentrations to the IGF-I receptor and exert effects through it. We used microarray gene expression profiling to investigate the gene expression regulated by IGF-I, IGF-II, and insulin after stimulation of the IGF-I receptor. Fibroblasts from mice, knockout for IGF-II and the IGF-II/cation-independent mannose-6-phosphate receptor, and expressing functional IGF-I but no insulin receptors, were stimulated for 4 h with equipotent saturating concentrations of insulin, IGF-I, and IGF-II. Each ligand specifically regulated a group of transcripts that was not regulated by the other two ligands. Many of the functions and pathways these regulated genes were involved in, were consistent with the known biological effects of these ligands. The differences in gene expression might therefore account for some of the different biological effects of insulin, IGF-I, and IGF-II. This work adds to the evidence that not only the affinity of a ligand determines its biological response, but also its nature, even through the same receptor.

摘要

胰岛素和胰岛素样生长因子(IGF)-I 和 -II 是密切相关的肽类,对代谢、生长、分化和发育的调节至关重要。IGFs 通过 IGF-I 受体发挥其主要作用。尽管胰岛素受体是胰岛素的主要生理受体,但这种肽类激素也可以在较高浓度下与 IGF-I 受体结合,并通过其发挥作用。我们使用微阵列基因表达谱分析研究了 IGF-I、IGF-II 和胰岛素刺激 IGF-I 受体后调节的基因表达。从缺乏 IGF-II 和 IGF-II/阳离子非依赖性甘露糖-6-磷酸受体的小鼠中分离出成纤维细胞,并表达功能性 IGF-I,但没有胰岛素受体,用等效力的饱和浓度胰岛素、IGF-I 和 IGF-II 刺激 4 小时。每种配体都特异性地调节一组不被其他两种配体调节的转录本。这些受调控基因所涉及的许多功能和途径与这些配体的已知生物学效应一致。因此,基因表达的差异可能解释了胰岛素、IGF-I 和 IGF-II 生物学效应的一些不同之处。这项工作进一步证明,不仅配体的亲和力决定其生物学反应,而且配体的性质也决定其生物学反应,即使通过相同的受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7a5/3738877/ab042e56dbbe/fendo-04-00098-g001.jpg

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