首页> 美国卫生研究院文献>Nucleic Acids Research >Proteolytic cleavage of initiation factor eIF-4 gamma in the reticulocyte lysate inhibits translation of capped mRNAs but enhances that of uncapped mRNAs.
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Proteolytic cleavage of initiation factor eIF-4 gamma in the reticulocyte lysate inhibits translation of capped mRNAs but enhances that of uncapped mRNAs.

机译:网状细胞裂解物中起始因子eIF-4γ的蛋白水解裂解可抑制带帽mRNA的翻译但可增强非带帽mRNA的翻译。

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摘要

Infection of cells with the foot-and-mouth-disease virus, a member of the picornavirus family, results in the shut-off of host protein synthesis. A major contributory mechanism is the proteolytic destruction of the gamma subunit of the complex eIF-4, which functions in translation to promote the binding of the 43S ribosomal preinitiation complex to the 5' end of the cellular mRNA molecules bearing a 5' terminal cap structure. Picornavirus RNA molecules, which are uncapped, use a distinct mechanism for translational initiation, which can operate in the absence, or at low levels, of eIF-4. The proteolysis of eIF-4 gamma in cells infected by foot-and-mouth-disease virus results from expression of a virus-encoded cysteine proteinase known as Leader (or L) protease. We have used a transcription plasmid encoding this protease as a tool to deplete in vitro translation systems of eIF-4 gamma in order to elucidate in more detail the role of this polypeptide in the control of translation. Using in vitro transcribed mRNAs we have observed a marked contrast between capped and uncapped transcripts in the response of their translation to the proteolysis of eIF-4 gamma. Translation of capped mRNAs is, as expected, severely impaired, and is restored by addition of eIF-4 complex containing the intact gamma-subunit. On the other hand, translation of uncapped transcripts, normally inefficient, is substantially enhanced. The data suggest that the translation of uncapped mRNAs may be stimulated in this system by one or more of the proteolytic degradation products of eIF-4 gamma.
机译:用小核糖核酸病毒家族成员口蹄疫病毒感染细胞会导致宿主蛋白质合成关闭。一个主要的促成机制是复合物eIF-4的γ亚基的蛋白水解破坏,其在翻译中起促进43S核糖体预起始复合物与带有5'末端帽结构的细胞mRNA分子5'末端结合的作用。 。未被封端的小核糖核酸病毒RNA分子使用独特的翻译起始机制,可以在不存在或水平较低的eIF-4的情况下运行。口蹄疫病毒感染的细胞中eIF-4γ的蛋白水解是由表达称为前导(或L)蛋白酶的病毒编码的半胱氨酸蛋白酶的表达引起的。为了更详细地阐明这种多肽在翻译控制中的作用,我们已使用编码该蛋白酶的转录质粒作为耗尽eIF-4γ体外翻译系统的工具。使用体外转录的mRNA,我们已经观察到带帽和无帽转录本在翻译对eIF-4γ蛋白水解反应中的明显差异。如预期的那样,加帽的mRNA的翻译会严重受损,并且可以通过添加包含完整γ-亚基的eIF-4复合体来恢复。另一方面,通常效率低下的无上限转录本的翻译显着增强。数据表明,在该系统中,eIF-4γ的一种或多种蛋白水解降解产物可能会刺激未封端的mRNA的翻译。

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