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铁通过蛋白酶体调节铁调节蛋白2的细胞内降解。

Iron regulates the intracellular degradation of iron regulatory protein 2 by the proteasome.

作者信息

Guo B, Phillips J D, Yu Y, Leibold E A

机构信息

Eccles Program in Human Molecular Biology and Genetics, University of Utah, Salt Lake City 84112, USA.

出版信息

J Biol Chem. 1995 Sep 15;270(37):21645-51. doi: 10.1074/jbc.270.37.21645.

Abstract

Iron regulatory proteins (IRP1 and IRP2) are RNA-binding proteins that bind to specific structures, termed iron-responsive elements (IREs), that are located in the 5'- or 3'-untranslated regions of mRNAs that encode proteins involved in iron homeostasis. IRP1 and IRP2 RNA binding activities are regulated by iron; IRP1 and IRP2 bind IREs with high affinity in iron-depleted cells and with low affinity in iron-repleted cells. The decrease in IRP1 RNA binding activity occurs by a switch between apoprotein and 4Fe-4S forms, without changes in IRP1 levels, whereas the decrease in IRP2 RNA binding activity reflects a reduction in IRP2 levels. To determine the mechanism by which iron decreases IRP2 levels, we studied IRP2 regulation by iron in rat hepatoma and human HeLa cells. The iron-dependent decrease in IRP2 levels was not due to a decrease in the amount of IRP2 mRNA or to a decrease in the rate of IRP2 synthesis. Pulse-chase experiments demonstrated that iron resulted in a 3-fold increase in the degradation rate of IRP2. IRP2 degradation depends on protein synthesis, but not transcription, suggesting a requirement for a labile protein. IRP2 degradation is not prevented by lysosomal inhibitors or calpain II inhibitors, but is prevented by inhibitors that block proteasome function. These data suggest the involvement of the proteasome in iron-mediated IRP2 proteolysis.

摘要

铁调节蛋白(IRP1和IRP2)是RNA结合蛋白,它们与特定结构结合,这些结构被称为铁反应元件(IRE),位于编码参与铁稳态的蛋白质的mRNA的5'-或3'-非翻译区。IRP1和IRP2的RNA结合活性受铁调节;在缺铁细胞中,IRP1和IRP2以高亲和力结合IRE,而在铁充足的细胞中则以低亲和力结合。IRP1 RNA结合活性的降低是通过脱辅基蛋白和4Fe-4S形式之间的转换发生的,而IRP1水平没有变化,而IRP2 RNA结合活性的降低反映了IRP2水平的降低。为了确定铁降低IRP2水平的机制,我们研究了大鼠肝癌细胞和人宫颈癌细胞中铁对IRP2的调节作用。铁依赖性的IRP2水平降低不是由于IRP2 mRNA量的减少或IRP2合成速率的降低。脉冲追踪实验表明,铁导致IRP2降解速率增加3倍。IRP2的降解依赖于蛋白质合成,而不是转录,这表明需要一种不稳定的蛋白质。溶酶体抑制剂或钙蛋白酶II抑制剂不能阻止IRP2的降解,但能阻止蛋白酶体功能的抑制剂可以阻止其降解。这些数据表明蛋白酶体参与了铁介导的IRP2蛋白水解。

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