Moxham C P, Jacobs S
Burroughs Wellcome Co., Research Triangle Park, North Carolina 27709.
J Cell Biochem. 1992 Feb;48(2):136-40. doi: 10.1002/jcb.240480205.
Insulin and IGF-I receptors are homologous disulfide linked alpha 2 beta 2 tetramers. These tetramers are formed biosynthetically when proreceptors containing alpha and beta subunits in a single uninterrupted linear peptide form disulfide linked homodimers and are subsequently proteolytically cleaved at the alpha-beta junctions. Cells expressing both receptors also express hybrid receptors that contain one insulin receptor alpha and beta subunit, and one IGF-I receptor alpha and beta subunit. These presumably form by the association of mixed proreceptors. Hybrid receptors greatly expand the possible repertoire of cellular responses to hormonal stimulation. Although not yet examined in detail, both the hormone binding and the signaling properties of the hybrid receptor appear to be different from that of either insulin or IGF-I receptor. Regulatory mechanisms that involve either insulin or IGF-I receptor, at the level of expression or subsequently, could alter the expression or function of the hybrid receptor or the other receptor. Similarly, pathology in one receptor could affect both the hybrid and other receptor, or perhaps be partially compensated for by a hybrid receptor. The magnitude of these effects could vary greatly in different tissues depending upon the relative level of expression of the different receptor forms. These postulated responses might explain some of the complex heterogeneity and linkage of these receptors that have been observed previously.
胰岛素和胰岛素样生长因子-I(IGF-I)受体是同源的二硫键连接的α2β2四聚体。这些四聚体在生物合成过程中形成,此时包含α和β亚基的单一连续线性肽形式的前体受体形成二硫键连接的同型二聚体,随后在α-β连接处被蛋白水解切割。同时表达这两种受体的细胞也表达杂交受体,这些杂交受体包含一个胰岛素受体α和β亚基以及一个IGF-I受体α和β亚基。这些杂交受体大概是由混合的前体受体结合形成的。杂交受体极大地扩展了细胞对激素刺激反应的可能范围。尽管尚未详细研究,但杂交受体的激素结合和信号传导特性似乎都与胰岛素或IGF-I受体不同。涉及胰岛素或IGF-I受体的调节机制,无论是在表达水平还是随后的过程中,都可能改变杂交受体或其他受体的表达或功能。同样,一种受体的病理状态可能会影响杂交受体和其他受体,或者可能部分由杂交受体补偿。这些效应的程度在不同组织中可能有很大差异,这取决于不同受体形式的相对表达水平。这些推测的反应可能解释了先前观察到的这些受体的一些复杂异质性和关联性。