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在网织红细胞裂解物中,真核起始因子(eIF)4E结合蛋白(PHAS-I;4E-BP1)可阻止真核起始因子(eIF)4G的蛋白水解切割。

The proteolytic cleavage of eukaryotic initiation factor (eIF) 4G is prevented by eIF4E binding protein (PHAS-I; 4E-BP1) in the reticulocyte lysate.

作者信息

Ohlmann T, Pain V M, Wood W, Rau M, Morley S J

机构信息

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

出版信息

EMBO J. 1997 Feb 17;16(4):844-55. doi: 10.1093/emboj/16.4.844.

Abstract

A common feature of viral infection is the subversion of the host cell machinery towards the preferential translation of viral products. In some instances, this is partly mediated by the expression of virally encoded proteases which lead to the cleavage of initiation factor eIF4G. The foot-and-mouth disease virus encodes two forms of a cysteine proteinase (L protease) which bisects the eIF4G polypeptide into an N-terminal fragment containing the eIF4E binding site, and a C-terminal fragment which contains binding sites for eIF4A and eIF3 and which associates with the 40S ribosomal subunit. Previously, we have demonstrated that the cleavage of eIF4G by L protease stimulates the translation of uncapped transcripts encoding cellular proteins and supports internal initiation driven by picornavirus internal ribosome entry segment (IRES) elements. Use of reticulocyte lysates manipulated to deplete them of eIF4E and the N-terminal fragment suggests that the C-terminal fragment of eIF4G is responsible for these effects, and we have now confirmed this by purifying the C-terminal fragment and analysing its effects directly in the absence of L protease. Interestingly, we find that pre-incubation of reticulocyte lysates or ribosomal salt wash fractions with the specific eIF4E binding protein, PHAS-I (eIF4E-BP1), blocks the proteolytic cleavage of eIF4G by L protease. This effect can be reversed by addition of recombinant eIF4E. These data are consistent with a model whereby the L protease cleavage site in eIF4G is inaccessible until a change in conformation is induced by the binding of eIF4E. This may have implications for a role for eIF4E binding in triggering changes that expose other domains in the eIF4G molecule during initiation of translation.

摘要

病毒感染的一个常见特征是宿主细胞机制被颠覆,从而优先翻译病毒产物。在某些情况下,这部分是由病毒编码的蛋白酶的表达介导的,这些蛋白酶会导致起始因子eIF4G的切割。口蹄疫病毒编码两种形式的半胱氨酸蛋白酶(L蛋白酶),该酶将eIF4G多肽一分为二,形成一个包含eIF4E结合位点的N端片段和一个包含eIF4A和eIF3结合位点并与40S核糖体亚基结合的C端片段。此前,我们已经证明L蛋白酶对eIF4G的切割会刺激编码细胞蛋白的无帽转录本的翻译,并支持由小RNA病毒内部核糖体进入片段(IRES)元件驱动的内部起始。使用经处理以耗尽eIF4E和N端片段的网织红细胞裂解物表明,eIF4G的C端片段负责这些效应,我们现在通过纯化C端片段并在没有L蛋白酶的情况下直接分析其效应来证实了这一点。有趣的是,我们发现用特异性eIF4E结合蛋白PHAS-I(eIF4E-BP1)对网织红细胞裂解物或核糖体盐洗组分进行预孵育,可阻断L蛋白酶对eIF4G的蛋白水解切割。加入重组eIF4E可逆转这种效应。这些数据与一个模型一致,即eIF4G中的L蛋白酶切割位点在eIF4E结合诱导构象变化之前是无法接近的。这可能对eIF4E结合在翻译起始期间触发暴露eIF4G分子中其他结构域的变化中的作用具有启示意义。

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