Knutson V P, Ronnett G V, Lane M D
Proc Natl Acad Sci U S A. 1982 May;79(9):2822-6. doi: 10.1073/pnas.79.9.2822.
Chronic exposure of 3T3 mouse fibroblasts to insulin or to the glucocorticoid dexamethasone induces down-regulation and up-regulation, respectively, of cell-surface and total cellular insulin binding capacity. Both processes are reversed upon withdrawal of the inducer. Scatchard analysis of insulin binding for receptors in the down- and up-regulated states indicates that the changes in binding capacity result primarily from alterations in insulin receptor level. That these alterations in total receptor level are due to changes in cell-surface receptor level is indicated by the fact that the level of trypsin-insensitive, presumably intracellular, insulin binding sites does not change appreciably upon down- and up-regulation. The effects of insulin-induced down-regulation and dexamethasone-induced up-regulation on the rates of insulin receptor synthesis and decay were assessed by the heavy-isotope density-shift technique. Cells were shifted to medium containing heavy (2H, 13C, 15N) amino acids and, at various times after the shift, light and heavy receptors solubilized from total cellular membranes were resolved by isopycnic banding on density gradients and then quantitated. It was demonstrated that the insulin- and dexamethasone-induced alterations in insulin receptor level were due entirely to changes in the rate constant for receptor inactivation. The decrease in the first-order rate constant for receptor decay caused by dexamethasone is unexpected in view of the known action of steroid hormones in the induction of the synthesis of specific proteins.
将3T3小鼠成纤维细胞长期暴露于胰岛素或糖皮质激素地塞米松中,分别会导致细胞表面和总细胞胰岛素结合能力的下调和上调。在去除诱导剂后,这两个过程均可逆转。对下调和上调状态下受体的胰岛素结合进行Scatchard分析表明,结合能力的变化主要源于胰岛素受体水平的改变。总受体水平的这些改变是由于细胞表面受体水平的变化,这一事实表明,在下调和上调过程中,胰蛋白酶不敏感的、可能位于细胞内的胰岛素结合位点水平没有明显变化。通过重同位素密度转移技术评估了胰岛素诱导的下调和地塞米松诱导的上调对胰岛素受体合成和降解速率的影响。将细胞转移至含有重(2H、13C、15N)氨基酸的培养基中,在转移后的不同时间,通过密度梯度等密度离心将从总细胞膜中溶解的轻、重受体分离,然后进行定量分析。结果表明,胰岛素和地塞米松诱导的胰岛素受体水平变化完全是由于受体失活速率常数的改变。考虑到类固醇激素在诱导特定蛋白质合成中的已知作用,地塞米松导致的受体降解一级速率常数降低是出乎意料的。