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Decoding the biosynthesis and function of diphthamide an enigmaticmodification of translation elongation factor 2 (EF2)

机译:解密神秘的双硫酰胺的生物合成和功能修饰翻译延伸因子2(EF2)

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摘要

Diphthamide is a highly conserved modification of archaeal and eukaryal translation elongation factor 2 (EF2) and yet why cells need EF2 to contain diphthamide is unclear. In yeast, the first steps of diphthamide synthesis and the genes (DPH1-DPH5) required to form the intermediate diphthine are well-documented. However, the last step, amidation of diphthine to diphthamide, had largely been ill-defined. Remarkably, through mining genome-wide synthetic gene array (SGA) and chemical genomics databases, recent studies by Uthman et al. [PLoS Genetics (2013) 9, e1003334] and Su et al. [Proc. Natl. Acad. Sci. USA (2012) 109, 19983-19987] have identified two more diphthamide players, DPH6 and DPH7. Consistent with roles in the amidation step, dph6 and dph7 deletion strains fail to complete diphthamide synthesis and accumulate diphthine-modified EF2. In contrast to Dph6, the catalytically relevant amidase, Dph7 appears to be regulatory. As shown by Uthman et al., it promotes dissociation of diphthine synthase (Dph5) from EF2, allowing diphthine amidation by Dph6 to occur and thereby coupling diphthine synthesis to the terminal step in thepathway. Remarkably, the study by Uthman et al. suggests thatDph5 has a novel role as an EF2 inhibitor that affects cell growth whendiphthamide synthesis is blocked or incomplete and, importantly, shows thatdiphthamide promotes the accuracy of EF2 performance during translation.
机译:白喉酰胺是古细菌和真核翻译延伸因子2(EF2)高度保守的修饰,但是为什么细胞需要EF2才能包含白喉酰胺尚不清楚。在酵母中,已充分证明了二苯甲酰胺合成的第一步以及形成中间体白喉氨酸所需的基因(DPH1-DPH5)。然而,最后一步,将白硫氨酸酰胺化为二甲酰胺,在很大程度上尚不清楚。值得注意的是,通过挖掘全基因组合成基因阵列(SGA)和化学基因组学数据库,Uthman等人的最新研究。 [PLoS Genetics(2013)9,e1003334]和Su等。 [过程Natl。学院科学USA(2012)109,19983-19987]确定了另外两个二甲酰胺类药物DPH6和DPH7。与在酰胺化步骤中的作用一致,dph6和dph7缺失菌株无法完成白喉酰胺的合成,并积累了白喉碱修饰的EF2。与Dph6相比,催化相关的酰胺酶Dph7似乎具有调节性。如Uthman等人所示,它促进了EF2中的白氨酸合酶(Dph5)的解离,从而使Dph6引起的白氨酸酰胺化反应发生,从而使白氨酸合成与酯化反应的最终步骤偶联。途径。值得注意的是,Uthman等人的研究。建议Dph5作为EF2抑制剂具有新颖作用,可在以下情况下影响细胞生长二硫酰胺合成受阻或不完全,重要的是表明双硫酰胺可提高翻译过程中EF2性能的准确性。

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