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Modification of translation factor aIF5A from Sulfolobus solfataricus

机译:从苏比洛枯草素的翻译因子Aif5a修改

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摘要

Eukaryotic eIF5A and its bacterial orthologue EF-P are translation elongation factors whose task is to rescue ribosomes from stalling during the synthesis of proteins bearing particular sequences such as polyproline stretches. Both proteins are characterized by unique post-translational modifications, hypusination and lysinylation, respectively, which are essential for their function. An orthologue is present in all Archaea but its function is poorly understood. Here, we show that aIF5A of the crenarchaeum Sulfolobus solfataricus is hypusinated and forms a stable complex with deoxyhypusine synthase, the first enzyme of the hypusination pathway. The recombinant enzyme is able to modify its substrate in vitro resulting in deoxyhypusinated aIF5A. Moreover, with the aim to identify the enzyme involved in the second modification step, i.e. hypusination, a set of proteins interacting with aIF5A was identified.
机译:真核EIF5a及其细菌正轨EF-P是翻译伸长因子,其任务是在合成蛋白质的合成中拯救核糖体的核糖蛋白,其特定序列如聚脯氨酸延伸。 两种蛋白质的特征在于分别是独特的翻译后修饰,半复分和溶羟基化,这对于它们的功能至关重要。 所有古亚妥出现的正轨,但其功能理解得很差。 在这里,我们表明Crenarchaeum sulfolobus solfataricus的Aif5a被Hpmusinged并与脱氧术型合成酶,半过度途径的第一酶形成稳定的络合物。 重组酶能够在体外改变其基材,得到脱氧型AIF5a。 此外,目的是鉴定第二种修饰步骤中所涉及的酶,即Hypventination,鉴定了一组与AIF5a相互作用的蛋白质。

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