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肝癌细胞对胰岛素受体的降解:胰岛素诱导的下调是由于基础受体降解速率增加所致。

Degradation of insulin receptors by hepatoma cells: insulin-induced down-regulation results from an increase in the rate of basal receptor degradation.

作者信息

Capeau J, Lascols O, Flaig-Staedel C, Blivet M J, Beck J P, Picard J

出版信息

Biochimie. 1985 Oct-Nov;67(10-11):1133-41. doi: 10.1016/s0300-9084(85)80111-5.

Abstract

The degradation of insulin receptors was studied in cultured Zajdela hepatoma cells (ZHC). Receptor distribution within the cell was evaluated by estimating: i) surface receptor level on entire cells, ii) total cell receptors solubilized by Triton from cell membranes and iii) intracellular receptors solubilized from cells whose surface receptors had been inactivated with trypsin. In the absence of insulin, 80-90% of the insulin binding sites were located on the cell surface. When insulin was added, a rapid decrease of surface receptors was observed. After 2 h, their level was reduced nearly by half; this reduction was accounted for by an actual receptor loss from the cell without an increase in the intracellular pool. These results indicate that insulin enhanced the rate of receptor degradation within the cell. Basal receptor inactivation was studied by using tunicamycin which inhibits new receptor synthesis. The surface receptor number was decreased with a half-life of 7 h, while the level of internal sites remained unchanged. Both basal and insulin-activated receptor degradation were markedly slowed down by chloroquine or dansylcadaverine, indicating the importance of endocytic pathways in this process. Similarly, when de novo protein glycosylation was inhibited for 24 h by tunicamycin, both basal and insulin-activated receptor inactivation were precluded.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在培养的扎伊德拉肝癌细胞(ZHC)中研究了胰岛素受体的降解。通过评估以下方面来评价细胞内受体的分布:i)整个细胞表面受体水平;ii)用 Triton 从细胞膜溶解的总细胞受体;iii)从表面受体已被胰蛋白酶灭活的细胞中溶解的细胞内受体。在没有胰岛素的情况下,80 - 90%的胰岛素结合位点位于细胞表面。添加胰岛素后,观察到表面受体迅速减少。2 小时后,其水平几乎降低了一半;这种降低是由于细胞实际丢失受体,而细胞内池没有增加。这些结果表明胰岛素提高了细胞内受体的降解速率。通过使用抑制新受体合成的衣霉素研究基础受体失活。表面受体数量以 7 小时的半衰期减少,而内部位点水平保持不变。氯喹或丹磺酰尸胺显著减慢了基础和胰岛素激活的受体降解,表明内吞途径在这个过程中的重要性。同样,当用衣霉素抑制新生蛋白质糖基化 24 小时时,基础和胰岛素激活的受体失活均被阻止。(摘要截短于 250 字)

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