Institut für Biologie, Genetik, Martin-Luther-Universität Halle-Wittenberg, Weinbergweg 10, D-06120 Halle (Saale), Germany.
Mol Microbiol. 2010 Jun 1;76(5):1082-94. doi: 10.1111/j.1365-2958.2010.07163.x. Epub 2010 Apr 14.
Based on studies in yeast and mammalian cells the Elongator complex has been implicated in functions as diverse as histone acetylation, polarized protein trafficking and tRNA modification. Here we show that Arabidopsis mutants lacking the Elongator subunit AtELP3/ELO3 have a defect in tRNA wobble uridine modification. Moreover, we demonstrate that yeast elp3 and elp1 mutants expressing the respective Arabidopsis Elongator homologues AtELP3/ELO3 and AtELP1/ELO2 assemble integer Elongator complexes indicating a high degree of structural conservation. Surprisingly, in vivo complementation studies based on Elongator-dependent tRNA nonsense suppression and zymocin tRNase toxin assays indicated that while AtELP1 rescued defects of a yeast elp1 mutant, the most conserved Elongator gene AtELP3, failed to complement an elp3 mutant. This lack of complementation is due to incompatibility with yeast ELP1 as coexpression of both plant genes in an elp1 elp3 yeast mutant restored Elongator's tRNA modification function in vivo. Similarly, AtELP1, not ScELP1 also supported partial complementation by yeast-plant Elp3 hybrids suggesting that AtElp1 has less stringent sequence requirements for Elp3 than ScElp1. We conclude that yeast and plant Elongator share tRNA modification roles and propose that this function might be conserved in Elongator from all eukaryotic kingdoms of life.
基于酵母和哺乳动物细胞的研究,Elongator 复合物被认为参与了多种功能,如组蛋白乙酰化、极化蛋白运输和 tRNA 修饰。在这里,我们表明,缺乏 Elongator 亚基 AtELP3/ELO3 的拟南芥突变体在 tRNA 摆动尿嘧啶修饰中存在缺陷。此外,我们证明,表达相应的拟南芥 Elongator 同源物 AtELP3/ELO3 和 AtELP1/ELO2 的酵母 elp3 和 elp1 突变体能够组装整数 Elongator 复合物,表明结构高度保守。令人惊讶的是,基于 Elongator 依赖的 tRNA 无意义抑制和 zymocin tRNase 毒素测定的体内互补研究表明,虽然 AtELP1 挽救了酵母 elp1 突变体的缺陷,但最保守的 Elongator 基因 AtELP3 未能互补 elp3 突变体。这种互补缺失是由于与酵母 ELP1 不兼容,因为在 elp1elp3 酵母突变体中共同表达这两种植物基因恢复了 Elongator 在体内的 tRNA 修饰功能。同样,AtELP1,而不是 ScELP1,也支持酵母-植物 Elp3 杂种的部分互补,表明 AtElp1 对 Elp3 的序列要求比 ScElp1 更不严格。我们得出结论,酵母和植物的 Elongator 具有共同的 tRNA 修饰作用,并提出该功能可能在所有真核生物王国的 Elongator 中保守。