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Translation initiation factor modifications and the regulation of protein synthesis in apoptotic cells.

机译:翻译起始因子修饰和凋亡细胞中蛋白质合成的调控。

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摘要

The rate of protein synthesis is rapidly down-regulated in mammalian cells following the induction of apoptosis. Inhibition occurs at the level of polypeptide chain initiation and is accompanied by the phosphorylation of the alpha subunit of initiation factor eIF2 and the caspase-dependent cleavage of initiation factors eIF4G, eIF4B, eIF2alpha and the p35 subunit of eIF3. Proteolytic cleavage of these proteins yields characteristic products which may exert regulatory effects on the translational machinery. Inhibition of caspase activity protects protein synthesis from long-term inhibition in cells treated with some, but not all, inducers of apoptosis. This review describes the initiation factor modifications and the possible signalling pathways by which translation may be regulated during apoptosis. We discuss the significance of the initiation factor cleavages and other changes for protein synthesis, and the implications of these events for our understanding of the cellular changes associated with apoptosis.
机译:诱导凋亡后,哺乳动物细胞中蛋白质的合成速率迅速下调。抑制作用发生在多肽链起始水平,并伴有起始因子eIF2的α亚基的磷酸化和起始因子eIF4G,eIF4B,eIF2alpha和eIF3的p35亚基的胱天蛋白酶依赖性切割。这些蛋白的蛋白水解切割产生特征性产物,该产物可能对翻译机制产生调节作用。抑制半胱天冬酶活性可以保护蛋白质合成免受长期(但不是全部)凋亡诱导剂处理的细胞的抑制。这篇综述描述了起始因子修饰和可能的信号传导途径,在凋亡过程中可以通过这些途径调节翻译。我们讨论了蛋白质合成中起始因子裂解和其他变化的意义,以及这些事件对我们理解与凋亡相关的细胞变化的意义。

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