首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Eukaryotic initiation factor 4E degradation during brain ischemia.
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Eukaryotic initiation factor 4E degradation during brain ischemia.

机译:大脑缺血期间真核生物起始因子4E的降解。

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摘要

Suppression of protein synthesis in the brain following an ischemic insult has been thought to occur because of inhibition of translation initiation. All eukaryotic mRNAs, with the exception of heat-shock transcripts, require the activity of eukaryotic initiation factor (eIF) 4E for formation of the translation initiation complex, and eIF-4E availability is rate-limiting. The response of brain eIF-4E concentration and phosphorylation following decapitation ischemia was studied in rat brain homogenates after electrophoresis and western blotting with antibodies against eIF-4E and phosphoserine, respectively. There was no change in level of eIF-4E after 5 min of ischemia (p = 0.82 vs. time 0), but it had decreased 32 (p = 0.01) and 57% (p = 0.006) after 10 and 20 min of ischemia, respectively. There was no loss of serine phosphorylation on eIF-4E beyond signal loss observed due to degradation of the protein itself (p = 0.31). In vitro exposure of eIF-4E to activated mu-calpain resulted in a 50% loss in 10min of eIF-4E on western blots. If active eIF-4E is required for translation of its own mRNA, degradation of this protein during ischemia, possibly by activated mu-calpain, could be a direct mechanism of irreversible neuronal injury, and the rate of proteolysis of eIF-4E could place an upper time limit on the maximal duration of global brain ischemia compatible with neurologic recovery.
机译:缺血性损伤后脑中蛋白质合成的抑制被认为是由于抑制翻译起始而发生的。除热休克转录本外,所有真核mRNA均需要真核起始因子(eIF)4E的活性来形成翻译起始复合物,而eIF-4E的可用性受到速率的限制。分别用抗eIF-4E和磷酸丝氨酸的抗体进行电泳和蛋白质印迹后,在大鼠脑匀浆中研究了斩首缺血后大脑eIF-4E浓度和磷酸化的反应。缺血5分钟后eIF-4E水平没有变化(p = 0.82 vs. time 0),但缺血10分钟和20 min后eIF-4E水平下降了32(p = 0.01)和57%(p = 0.006)。 , 分别。除了由于蛋白质本身的降解而观察到的信号损失外,eIF-4E上的丝氨酸磷酸化没有损失(p = 0.31)。在免疫印迹上,将eIF-4E体外暴露于活化的mu-calpain会使eIF-4E在10分钟内损失50%。如果需要活性eIF-4E来翻译其自身的mRNA,则在缺血过程中该蛋白的降解(可能是由于激活的mu-calpain引起的)可能是不可逆神经元损伤的直接机制,而eIF-4E的蛋白水解速度可能会导致与神经系统恢复相容的全脑缺血最大持续时间的上限。

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