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原代培养脂肪细胞中胰岛素受体亲和力的葡萄糖调节

Glucose regulation of insulin receptor affinity in primary cultured adipocytes.

作者信息

Traxinger R R, Marshall S

机构信息

Department of Biochemistry, University of Tennessee, Memphis 38163.

出版信息

J Biol Chem. 1990 Nov 5;265(31):18879-83.

PMID:2229049
Abstract

Treatment of primary cultured adipocytes with 20 mM glucose resulted in a progressive increase in specific 125I-insulin binding that began almost immediately (no lag period) and culminated in a 60% increase by 24 h. This effect was dose-dependent (glucose ED50 of 4.6 mM) and mediated by an increase in insulin receptor affinity. Moreover, it appears that glucose modulates insulin receptor affinity through de novo protein synthesis rather than through covalent modification of receptors, since cycloheximide selectively inhibited the glucose-induced increase in insulin binding capacity (ED50 of 360 ng/ml) and restored receptor affinity to control values. Importantly, insulin sensitivity of the glucose transport system was increased by glucose treatment (63%) to an extent comparable with the enhancement in receptor affinity, thus indicating a functional coupling between insulin binding and insulin action. When the long term effects of insulin were assessed (24 h), we found that insulin treatment reduced 125I-insulin binding by greater than 60% by down-regulating the number of cell surface receptors in a dose-dependent manner (insulin ED50 of 7.4 ng/ml). On the basis of these studies, we conclude that 1) insulin binding is subject to dual regulation (glucose controls insulin action by enhancing receptor affinity, whereas insulin controls the number of cell surface receptors); and 2) glucose appears to modulate insulin receptor affinity through the rapid biosynthesis of an affinity regulatory protein.

摘要

用20 mM葡萄糖处理原代培养的脂肪细胞,导致特异性125I-胰岛素结合逐渐增加,几乎立即开始(无延迟期),并在24小时时达到60%的增加。这种效应具有剂量依赖性(葡萄糖ED50为4.6 mM),并由胰岛素受体亲和力增加介导。此外,葡萄糖似乎通过从头合成蛋白质而非通过受体的共价修饰来调节胰岛素受体亲和力,因为放线菌酮选择性地抑制了葡萄糖诱导的胰岛素结合能力增加(ED50为360 ng/ml),并使受体亲和力恢复到对照值。重要的是,葡萄糖处理使葡萄糖转运系统的胰岛素敏感性增加(63%),增加程度与受体亲和力的增强相当,从而表明胰岛素结合与胰岛素作用之间存在功能偶联。当评估胰岛素的长期作用(24小时)时,我们发现胰岛素处理通过以剂量依赖性方式下调细胞表面受体数量(胰岛素ED50为7.4 ng/ml)使125I-胰岛素结合减少超过60%。基于这些研究,我们得出结论:1)胰岛素结合受到双重调节(葡萄糖通过增强受体亲和力来控制胰岛素作用,而胰岛素控制细胞表面受体数量);2)葡萄糖似乎通过快速生物合成一种亲和力调节蛋白来调节胰岛素受体亲和力。

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