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一名极度胰岛素抵抗患者转化淋巴细胞中未裂解胰岛素原受体的结合特异性和分子内信号转导

Binding specificity and intramolecular signal transmission of uncleaved insulin proreceptor in transformed lymphocytes from a patient with extreme insulin resistance.

作者信息

Sasaoka T, Shigeta Y, Takata Y, Sugibayashi M, Hisatomi A, Kobayashi M

机构信息

Third Department of Medicine, Shiga University of Medical Science, Japan.

出版信息

Diabetologia. 1989 Jun;32(6):371-7. doi: 10.1007/BF00277261.

Abstract

An alteration of an amino acid sequence in the processing site of the insulin proreceptor by a point mutation of the insulin receptor gene produced extreme insulin resistance. We characterized functional properties of the unprocessed insulin receptor in transformed lymphocytes from a patient. Insulin binding to intact cells and to a partially purified insulin receptor preparation was radically decreased to 20% and 18% of the control values, respectively. In competitive insulin binding to intact cells, [LeuA3]-, [LeuB24]-, [SerB24]-insulin, and mini-proinsulin ([ B(1-29)-Ala-Ala-Lys-A(1-21)]-insulin) had the same relative binding activity in both the patient's and the control cells, but proinsulin and IGF-I were markedly less able to displace 125I-insulin in the patient's cells. In contrast to the study in intact cells, proinsulin and IGF-I as well as other insulin analogues had the same relative binding activity to bind to the partially lectin-purified insulin receptor preparations from both the patient's and the control cells. As regards the signal transduction after receptor binding, insulin-stimulated autophosphorylation of the unprocessed insulin proreceptor occurred proportionally to the amount of decreased insulin binding. With 0.025% trypsin treatment, the abnormal binding characteristics and autophosphorylation were normalized through conversion to functionally normal receptors. In spite of the abnormal processing, self-association of receptors into oligomeric structures was observed in the proreceptor. These results suggest that the unprocessed insulin proreceptor in the plasma membranes has an altered conformation which affects its binding characteristics but not its intramolecular signal transmission.

摘要

胰岛素受体基因的点突变导致胰岛素原受体加工位点的氨基酸序列改变,从而产生了极端的胰岛素抵抗。我们对一名患者转化淋巴细胞中未加工的胰岛素受体的功能特性进行了表征。胰岛素与完整细胞及部分纯化的胰岛素受体制剂的结合分别大幅降至对照值的20%和18%。在与完整细胞的竞争性胰岛素结合实验中,[亮氨酸A3]-、[亮氨酸B24]-、[丝氨酸B24]-胰岛素以及微型胰岛素原([B(1 - 29)-丙氨酸-丙氨酸-赖氨酸-A(1 - 21)]-胰岛素)在患者细胞和对照细胞中的相对结合活性相同,但胰岛素原和IGF-I在患者细胞中置换125I-胰岛素的能力明显较弱。与完整细胞的研究结果相反,胰岛素原、IGF-I以及其他胰岛素类似物与来自患者细胞和对照细胞的部分凝集素纯化的胰岛素受体制剂的结合具有相同的相对结合活性。关于受体结合后的信号转导,胰岛素刺激的未加工胰岛素原受体的自磷酸化与胰岛素结合减少的量成比例发生。用0.025%胰蛋白酶处理后,通过转化为功能正常的受体,异常的结合特性和自磷酸化得以正常化。尽管存在异常加工,但在原受体中仍观察到受体自组装成寡聚结构。这些结果表明,质膜中未加工的胰岛素原受体具有改变的构象,这影响了其结合特性,但不影响其分子内信号传递。

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