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胰岛素受体细胞内差异信号传导的分子机制。

Molecular mechanisms of differential intracellular signaling from the insulin receptor.

作者信息

Jensen Maja, De Meyts Pierre

机构信息

Hagedorn Research Institute, 2820 Gentofte, Denmark.

出版信息

Vitam Horm. 2009;80:51-75. doi: 10.1016/S0083-6729(08)00603-1.

Abstract

Binding of insulin to the insulin receptor (IR) leads to a cascade of intracellular signaling events, which regulate multiple biological processes such as glucose and lipid metabolism, gene expression, protein synthesis, and cell growth, division, and survival. However, the exact mechanism of how the insulin-IR interaction produces its own specific pattern of regulated cellular functions is not yet fully understood. Insulin analogs, anti-IR antibodies as well as synthetic insulin mimetic peptides that target the two insulin-binding regions of the IR, have been used to study the relationship between different aspects of receptor binding and function as well as providing new insights into the structure and function of the IR. This review focuses on the current knowledge of activation of the IR and how activation of the IR by different ligands initiates different cellular responses. Investigation of differential activation of the IR may provide clues to the molecular mechanisms of how the insulin-receptor interaction controls the specificity of the downstream signaling response. Differences in the kinetics of ligand-interaction with the IR, the magnitude of the signal as well as its subcelllar location all play important roles in determining/eliciting the different biological responses. Additional studies are nevertheless required to dissect the precise molecular mechanisms leading to the differential signaling from the IR.

摘要

胰岛素与胰岛素受体(IR)结合会引发一系列细胞内信号转导事件,这些事件调控多种生物学过程,如葡萄糖和脂质代谢、基因表达、蛋白质合成以及细胞生长、分裂和存活。然而,胰岛素与IR相互作用如何产生其特定的细胞功能调控模式的确切机制尚未完全阐明。胰岛素类似物、抗IR抗体以及靶向IR两个胰岛素结合区域的合成胰岛素模拟肽,已被用于研究受体结合与功能不同方面之间的关系,并为IR的结构和功能提供新的见解。本综述聚焦于IR激活的现有知识,以及不同配体对IR的激活如何引发不同的细胞反应。对IR差异激活的研究可能为胰岛素-受体相互作用如何控制下游信号反应特异性的分子机制提供线索。配体与IR相互作用的动力学、信号强度及其亚细胞定位的差异在决定/引发不同生物学反应中均起重要作用。然而,仍需要进一步研究来剖析导致IR差异信号转导的精确分子机制。

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