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细胞凋亡过程中真核生物蛋白质合成起始因子的完整性和关联性变化。

Changes in integrity and association of eukaryotic protein synthesis initiation factors during apoptosis.

作者信息

Bushell M, Wood W, Clemens M J, Morley S J

机构信息

Biochemistry Group, School of Biological Sciences, University of Sussex, Brighton, UK.

出版信息

Eur J Biochem. 2000 Feb;267(4):1083-91. doi: 10.1046/j.1432-1327.2000.01101.x.

DOI:10.1046/j.1432-1327.2000.01101.x
PMID:10672017
Abstract

Induction of apoptosis results in inhibition of the rate of overall protein synthesis in a variety of cell types. We have shown previously that polypeptide chain initiation factor eIF4GI is rapidly cleaved by caspase-3, whereas other components of the eIF4F complex are much more stable during apoptosis in BJAB and Jurkat cells. We have now extended our analysis to other factors involved in the initiation of protein synthesis and we report here that eIF4B, the p35 subunit of eIF3, and minor proportions of the alpha subunit of eIF2 and the eIF4E-binding protein 4E-BP1 are also cleaved to give rise to discrete fragments. These cleavages occur with delayed kinetics relative to that seen for eIF4GI, and eIF2beta and eIF2gamma levels also decrease at a relatively late stage of apoptosis. In contrast, the second form of eIF4G described recently, eIF4GII, is cleaved as rapidly as eIF4GI under the same conditions. Purified recombinant caspase-3 is able to degrade eIF4B and eIF3(p35) in vitro, producing fragments of the same sizes as those seen in intact cells. Induction of apoptosis also results in a biphasic change in the association of 4E-BP1 with eIF4E. Thus the progress of apoptosis is characterized by a complex programme of changes in several initiation factors, including the specific fragmentation or complete degradation of some and alterations in the association status of others. These events are likely to contribute to the inhibition of protein synthesis seen under these conditions.

摘要

细胞凋亡的诱导会导致多种细胞类型中整体蛋白质合成速率的抑制。我们之前已经表明,多肽链起始因子eIF4GI会被caspase - 3迅速切割,而在BJAB和Jurkat细胞凋亡过程中,eIF4F复合物的其他成分则要稳定得多。我们现在将分析扩展到参与蛋白质合成起始的其他因子,并且在此报告eIF4B、eIF3的p35亚基以及小部分的eIF2α亚基和eIF4E结合蛋白4E - BP1也会被切割产生离散的片段。相对于eIF4GI的切割,这些切割发生的动力学延迟,并且eIF2β和eIF2γ水平在凋亡的相对晚期也会下降。相比之下,最近描述的eIF4G的第二种形式eIF4GII,在相同条件下与eIF4GI一样迅速被切割。纯化的重组caspase - 3能够在体外降解eIF4B和eIF3(p35),产生与完整细胞中所见大小相同的片段。细胞凋亡的诱导还会导致4E - BP1与eIF4E结合的双相变化。因此,细胞凋亡的进程以几种起始因子的复杂变化程序为特征,包括一些因子的特异性片段化或完全降解以及其他因子结合状态的改变。这些事件可能导致在这些条件下所见的蛋白质合成抑制。

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