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抗胰岛素受体抗体导致胰岛素受体蛋白水平降低:酪氨酸激酶活性和受体内化的作用

Decrease in the insulin receptor protein level by anti-insulin receptor antibodies: roles of tyrosine kinase activity and receptor internalization.

作者信息

Fujita N, Yamasaki H, Yamakawa K, Uotani S, Kuwahara H, Degawa-Yamauchi M, Abe T, Ozaki M, Sera Y, Kawasaki E, Takino H, Yamaguchi Y, Eguchi K

机构信息

The First Department of Internal Medicine, Nagasaki University, School of Medicine, 1-7-1 Sakamoto, Nagasaki 852-8501, Japan.

出版信息

Acta Diabetol. 2002 Dec;39(4):221-7. doi: 10.1007/s005920200038.

Abstract

To investigate the mechanism of severe impairment of insulin action in type B insulin resistance, we extracted IgG from the serum of a patient with type B insulin resistance (B-IgG) and analyzed the inhibiting effect of B-IgG not only on insulin signaling but also on IGF-I signaling in Chinese hamster ovary (CHO) cells expressing human insulin receptor or human IGF-I receptor. Preincubation with 1 mg/ml B-IgG prevented insulin-induced phosphorylation of insulin receptor and insulin receptor substrate-1 (IRS-1) but did not alter the IGF-I-induced phosphorylation of the IGF-I receptor and IRS-1. (125)I-insulin binding was inhibited by 93% after preincubation with B-IgG at 37 degrees C and was recovered up to 50% of the control value by acid washing. However, when cells were preincubated with B-IgG at 4 degrees C, the insulin binding completely recovered the control value by acid washing. (125)I-IGF-I binding was not altered by B-IgG preincubation. Immunoblot study revealed that the protein level of the insulin receptor was strongly decreased by preincubation with 1 mg/ml B-IgG at 37 degrees C, but never at 4 degrees C. The IRS-1 protein level did not change by B-IgG preincubation. In order to know the role of the insulin receptor internalization in the inhibiting effect of B-IgG, we employed CHO cells expressing mutant insulin receptors which do not undergo internalization (CHO-K1018R). B-IgG incubation of CHO-K1018R at 37 degrees C failed to decrease the protein level of the insulin receptor. The present data indicate that IgG from the diabetic patient with type B insulin resistance decreased insulin receptor protein level, probably due to the enhanced degradation rate of the insulin receptor, in which insulin receptor tyrosine kinase activity and internalization are required for this process. This effect of B-IgG was specific for the insulin receptor with no effect on either IGF-I receptor or IRS-1, as reflected by the IGF-I effectiveness on glycemic control in this patient.

摘要

为研究B型胰岛素抵抗中胰岛素作用严重受损的机制,我们从一名B型胰岛素抵抗患者的血清中提取了IgG(B-IgG),并分析了B-IgG对表达人胰岛素受体或人IGF-I受体的中国仓鼠卵巢(CHO)细胞中胰岛素信号传导以及IGF-I信号传导的抑制作用。用1mg/ml B-IgG预孵育可阻止胰岛素诱导的胰岛素受体和胰岛素受体底物-1(IRS-1)磷酸化,但不改变IGF-I诱导的IGF-I受体和IRS-1磷酸化。在37℃下用B-IgG预孵育后,(125)I-胰岛素结合被抑制93%,经酸洗后可恢复至对照值的50%。然而,当细胞在4℃下用B-IgG预孵育时,胰岛素结合经酸洗后完全恢复至对照值。B-IgG预孵育未改变(125)I-IGF-I结合。免疫印迹研究显示,在37℃下用1mg/ml B-IgG预孵育可使胰岛素受体蛋白水平显著降低,但在4℃下则不会。B-IgG预孵育未改变IRS-1蛋白水平。为了解胰岛素受体内化在B-IgG抑制作用中的作用,我们使用了表达不会发生内化的突变胰岛素受体的CHO细胞(CHO-K1018R)。在37℃下用B-IgG孵育CHO-K1018R未能降低胰岛素受体蛋白水平。目前的数据表明,来自B型胰岛素抵抗糖尿病患者的IgG降低了胰岛素受体蛋白水平,可能是由于胰岛素受体降解速率加快,在此过程中胰岛素受体酪氨酸激酶活性和内化是必需的。B-IgG的这种作用对胰岛素受体具有特异性,对IGF-I受体或IRS-1均无影响,这在该患者的IGF-I对血糖控制的有效性中得到了体现。

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