Nakashima N, Umeda F, Yanase T, Nawata H
Third Department of Internal Medicine, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
J Clin Endocrinol Metab. 1995 Dec;80(12):3662-7. doi: 10.1210/jcem.80.12.8530617.
Mutation of the insulin receptor gene can compromise the ability of the receptor to mediate insulin action. A homozygous point mutation that results in the substitution of histidine for arginine 252 in the insulin receptor alpha-subunit has now been identified by polymerase chain reaction and single stranded conformational polymorphism analysis in a 20-yr-old Japanese woman with type A syndrome and severe insulin resistance. The proband's consanguineous parents (diabetic mother and normal father) and her sister (impaired glucose tolerance), each of whom showed an exaggerated insulin response to an oral glucose load, were heterozygous for this mutation. Her brother showed a normal insulin response and lacked the mutation, as did 50 healthy Japanese control subjects. The chronic sc administration of insulin-like growth factor I (IGF-I) improved the patient's hyperglycemia and corrected certain metabolic abnormalities over a 9-month period, even though the binding of 125I-labeled IGF-I to her cultured fibroblasts was decreased by 40% relative to that to cells from healthy controls. Studies of the binding of 125I-labeled insulin to the proband's cultured fibroblasts, to COS-I cells transfected with complementary DNA encoding the mutant insulin receptor, and to partially purified mutant receptors revealed that the Arg252-->His mutation decreased both cell surface expression and the affinity for insulin for the receptor. These observations suggest that the homozygous Arg252-->His mutation is responsible for the type A insulin resistance of the proband, whereas in the heterozygous state, the mutation results in mild insulin resistance indistinguishable from that observed in noninsulin-dependent diabetes mellitus.
胰岛素受体基因突变会损害受体介导胰岛素作用的能力。现已通过聚合酶链反应和单链构象多态性分析,在一名患有A型综合征和严重胰岛素抵抗的20岁日本女性中,鉴定出一种纯合点突变,该突变导致胰岛素受体α亚基中的精氨酸252被组氨酸取代。先证者的近亲父母(患有糖尿病的母亲和正常的父亲)以及她的妹妹(糖耐量受损),对口服葡萄糖负荷均表现出过度的胰岛素反应,他们均为该突变的杂合子。她的哥哥胰岛素反应正常且没有该突变,50名健康的日本对照受试者也是如此。在9个月的时间里,长期皮下注射胰岛素样生长因子I(IGF-I)改善了患者的高血糖症并纠正了某些代谢异常,尽管相对于健康对照细胞,125I标记的IGF-I与她培养的成纤维细胞的结合减少了40%。对125I标记的胰岛素与先证者培养的成纤维细胞、转染了编码突变胰岛素受体互补DNA的COS-I细胞以及部分纯化的突变受体的结合研究表明,Arg252→His突变降低了受体的细胞表面表达和对胰岛素的亲和力。这些观察结果表明,纯合的Arg252→His突变是先证者A型胰岛素抵抗的原因,而在杂合状态下,该突变导致的轻度胰岛素抵抗与非胰岛素依赖型糖尿病中观察到的情况难以区分。