Cama A, Marcus-Samuels B, Taylor S I
Biochemistry and Molecular Pathophysiology Section, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892.
Diabetes. 1988 Jul;37(7):982-8. doi: 10.2337/diab.37.7.982.
Defects in insulin-receptor structure can impair insulin-receptor function. We have previously identified qualitative abnormalities in insulin binding to insulin receptors from an insulin-resistant patient (Lep/Ark-1). The defects in insulin binding are probably caused by a defect in receptor structure. In this study, we used immunological probes to investigate the structural defect(s) responsible for the abnormal function. Several anti-receptor antibodies were impaired in their abilities to bind to the insulin receptor of Lep/Ark-1. For example, monoclonal antibody MoAb-51 was much less effective in inhibiting binding to insulin receptors from Lep/Ark-1 (ID50 70 nM) than to those of normal subjects (ID50 8 nM). In addition, there was a 10-fold reduction of the avidity with which human polyclonal antibody B-d immunoprecipitated the patient's insulin receptors. The avidity of antibody B-10 was also reduced, although to a lesser extent. In contrast, several site-specific antibodies against epitopes on the beta-subunit of the receptor bound to receptors from Lep/Ark-1 with normal avidity. The data with monoclonal and polyclonal antibodies are consistent with the hypothesis that the structural defect resides in the extracellular domain of this patient's insulin receptor. The normal immunoreactivity of two putative phosphorylation sites on the beta-subunit with site-specific antibodies gives further support to the conclusion that this patient's receptors have normal tyrosine kinase activity.
胰岛素受体结构缺陷可损害胰岛素受体功能。我们之前已鉴定出一名胰岛素抵抗患者(Lep/Ark-1)的胰岛素与胰岛素受体结合存在定性异常。胰岛素结合缺陷可能是由受体结构缺陷引起的。在本研究中,我们使用免疫探针来研究导致功能异常的结构缺陷。几种抗受体抗体与Lep/Ark-1的胰岛素受体结合的能力受损。例如,单克隆抗体MoAb-51抑制与Lep/Ark-1胰岛素受体结合(半数抑制浓度为70 nM)的效果远低于与正常受试者胰岛素受体结合的效果(半数抑制浓度为8 nM)。此外,人多克隆抗体B-d免疫沉淀该患者胰岛素受体的亲和力降低了10倍。抗体B-10的亲和力也有所降低,尽管程度较小。相比之下,几种针对受体β亚基表位的位点特异性抗体与Lep/Ark-1受体的结合亲和力正常。单克隆和多克隆抗体的数据与以下假设一致:结构缺陷存在于该患者胰岛素受体的细胞外结构域。β亚基上两个假定磷酸化位点与位点特异性抗体的正常免疫反应性进一步支持了该患者受体具有正常酪氨酸激酶活性的结论。