首页> 美国卫生研究院文献>Frontiers in Endocrinology >The Novel Functions of High-Molecular-Mass Complexes Containing Insulin Receptor Substrates in Mediation and Modulation of Insulin-Like Activities: Emerging Concept of Diverse Functions by IRS-Associated Proteins
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The Novel Functions of High-Molecular-Mass Complexes Containing Insulin Receptor Substrates in Mediation and Modulation of Insulin-Like Activities: Emerging Concept of Diverse Functions by IRS-Associated Proteins

机译:包含胰岛素受体底物的高分子量复合物在胰岛素样活性的介导和调节中的新功能:IRS相关蛋白的多样化功能的新兴概念

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摘要

Insulin-like peptides, such as insulin-like growth factors (IGFs) and insulin, induce a variety of bioactivities, such as growth, differentiation, survival, increased anabolism, and decreased catabolism in many cell types and in vivo. In general, IGFs or insulin bind to IGF-I receptor (IGF-IR) or insulin receptor (IR), activating the receptor tyrosine kinase. Insulin receptor substrates (IRSs) are known to be major substrates of receptor kinases, mediating IGF/insulin signals to direct bioactivities. Recently, we discovered that IRSs form high-molecular-mass complexes (referred to here as IRSomes) even without IGF/insulin stimulation. These complexes contain proteins (referred to here as IRSAPs; IRS-associated proteins), which modulate tyrosine phosphorylation of IRSs by receptor kinases, control IRS stability, and determine intracellular localization of IRSs. In addition, in these complexes, we found not only proteins that are involved in RNA metabolism but also RNAs themselves. Thus, IRSAPs possibly contribute to modulation of IGF/insulin bioactivities. Since it is established that disorder of modulation of insulin-like activities causes various age-related diseases including cancer, we could propose that the IRSome is an important target for treatment of these diseases.
机译:胰岛素样肽,例如胰岛素样生长因子(IGF)和胰岛素,在许多细胞类型和体内诱导多种生物活性,例如生长,分化,存活,合成代谢增加和分解代谢降低。通常,IGF或胰岛素与IGF-1受体(IGF-1R)或胰岛素受体(IR)结合,从而激活受体酪氨酸激酶。已知胰岛素受体底物(IRS)是受体激酶的主要底物,介导IGF /胰岛素信号以指导生物活性。最近,我们发现即使没有IGF /胰岛素刺激,IRS仍会形成高分子复合物(此处称为IRSomes)。这些复合物包含蛋白质(此处称为IRSAP; IRS相关蛋白质),这些蛋白质通过受体激酶调节IRS的酪氨酸磷酸化,控制IRS稳定性并确定IRS的细胞内定位。此外,在这些复合物中,我们不仅发现了参与RNA代谢的蛋白质,而且还发现了RNA本身。因此,IRSAPs可能有助于调节IGF /胰岛素的生物活性。由于已经确定胰岛素样活性的调节障碍会导致各种与年龄有关的疾病,包括癌症,因此我们可以提出IRSome是治疗这些疾病的重要靶标。

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