Tatulian Suren A
Department of Physics, University of Central Florida , 4111 Libra Drive, Orlando, Florida 32816, United States.
Biochemistry. 2015 Sep 15;54(36):5523-32. doi: 10.1021/acs.biochem.5b00805. Epub 2015 Sep 3.
The insulin receptor (IR) is a (αβ)2-type transmembrane tyrosine kinase that plays a central role in cell metabolism. Each αβ heterodimer consists of an extracellular ligand-binding α-subunit and a membrane-spanning β-subunit that comprises the cytoplasmic tyrosine kinase (TK) domain and the phosphorylation sites. The α- and β-subunits are linked via a single disulfide bridge, and the (αβ)2 tetramer is formed by disulfide bonds between the α-chains. Insulin binding induces conformational changes in IR that reach the intracellular β-subunit followed by a protein phosphorylation and activation cascade. Defects in this signaling process, including IR dysfunction caused by mutations, result in type 2 diabetes. Rational drug design aimed at treatment of diabetes relies on knowledge of the detailed structure of IR and the dynamic structural transformations during transmembrane signaling. Recent X-ray crystallographic studies have provided important clues about the mode of binding of insulin to IR, the resulting structural changes and their transmission to the TK domain, but a complete understanding of the structural basis underlying insulin signaling has not been achieved. This review presents a critical analysis of the current status of the structure-function relationship of IR, with a comparative assessment of the other IR family receptors, and discusses potential advancements that may provide insight into the molecular mechanism of insulin signaling.
胰岛素受体(IR)是一种(αβ)2型跨膜酪氨酸激酶,在细胞代谢中起核心作用。每个αβ异二聚体由一个细胞外配体结合α亚基和一个跨膜β亚基组成,β亚基包含细胞质酪氨酸激酶(TK)结构域和磷酸化位点。α亚基和β亚基通过一个二硫键相连,(αβ)2四聚体由α链之间的二硫键形成。胰岛素结合会诱导IR发生构象变化,这种变化会传递到细胞内的β亚基,随后引发蛋白质磷酸化和激活级联反应。该信号传导过程中的缺陷,包括由突变引起的IR功能障碍,会导致2型糖尿病。旨在治疗糖尿病的合理药物设计依赖于对IR详细结构以及跨膜信号传导过程中动态结构转变的了解。最近的X射线晶体学研究提供了关于胰岛素与IR结合模式、由此产生的结构变化及其向TK结构域传递的重要线索,但尚未完全理解胰岛素信号传导的结构基础。本综述对IR结构 - 功能关系的现状进行了批判性分析,并对其他IR家族受体进行了比较评估,同时讨论了可能有助于深入了解胰岛素信号传导分子机制的潜在进展。