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胰岛素降解的调控:一种进化上保守的胰岛素降解酶的表达通过细胞内途径增加降解。

Regulation of insulin degradation: expression of an evolutionarily conserved insulin-degrading enzyme increases degradation via an intracellular pathway.

作者信息

Kuo W L, Gehm B D, Rosner M R

机构信息

Ben May Institute, Department of Pharmacological and Physiological Sciences, University of Chicago, Illinois 60637.

出版信息

Mol Endocrinol. 1991 Oct;5(10):1467-76. doi: 10.1210/mend-5-10-1467.

Abstract

The insulin-degrading enzyme (IDE) is an evolutionarily conserved enzyme that has been implicated in cellular insulin degradation, but its site of action and importance in regulating insulin degradation have not been clearly established. We addressed this question by examining the effects of overexpressing IDE on insulin degradation in COS cells, using both human IDE (hIDE) and its Drosophila homolog (dIDE). The dIDE, which was recently cloned in our laboratory, has 46% amino acid identity with hIDE, degrades insulin with comparable efficiency, and is readily expressed in mammalian cells. Transient expression of dIDE or hIDE in COS monkey kidney cells led to a 5- to 7-fold increase in the rate of degradation of extracellular insulin, indicating that IDE can regulate cellular insulin degradation. Insulin-degrading activity in the medium was very low and could not account for the difference between transfected and control cells. To further localize the site of IDE action, the fate of insulin after receptor binding was examined. The dIDE-transfected cells displayed increased degradation of prebound insulin compared to control cells. This increase in degradation was observed even when excess unlabeled insulin was added to block reuptake or extracellular degradation. These results indicate that IDE acts at least in part within the cell. The lysosomotropic agents chloroquine and NH4Cl did not affect the increase in insulin degradation produced by transfection with dIDE, indicating that the lysosomal and IDE-mediated pathways of insulin degradation are independent. The results demonstrate that IDE can regulate the degradation of insulin by intact cells via an intracellular pathway.

摘要

胰岛素降解酶(IDE)是一种在进化上保守的酶,它与细胞内胰岛素的降解有关,但其作用位点以及在调节胰岛素降解中的重要性尚未明确确定。我们通过检测过表达IDE对COS细胞中胰岛素降解的影响来解决这个问题,使用了人类IDE(hIDE)及其果蝇同源物(dIDE)。最近在我们实验室克隆的dIDE与hIDE有46%的氨基酸同一性,能以相当的效率降解胰岛素,并且能在哺乳动物细胞中轻松表达。在COS猴肾细胞中瞬时表达dIDE或hIDE导致细胞外胰岛素降解速率增加5至7倍,这表明IDE可以调节细胞内胰岛素的降解。培养基中的胰岛素降解活性非常低,无法解释转染细胞与对照细胞之间的差异。为了进一步确定IDE的作用位点,我们检测了胰岛素与受体结合后的命运。与对照细胞相比,转染dIDE的细胞对预先结合的胰岛素的降解增加。即使加入过量未标记的胰岛素来阻断再摄取或细胞外降解,也观察到了这种降解增加。这些结果表明IDE至少部分在细胞内起作用。溶酶体促渗剂氯喹和氯化铵并不影响dIDE转染所产生的胰岛素降解增加,这表明胰岛素降解的溶酶体途径和IDE介导的途径是独立的。结果表明,IDE可以通过细胞内途径调节完整细胞对胰岛素的降解。

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