State Key Laboratory of Molecular Biology and Research Center for Structural Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences and Graduate School of Chinese Academy of Sciences, 320 Yue-Yang Road, Shanghai 200031, China.
Nucleic Acids Res. 2010 Mar;38(4):1401-12. doi: 10.1093/nar/gkp1053. Epub 2009 Nov 26.
The ancient and ubiquitous aminoacyl-tRNA synthetases constitute a valuable model system for studying early evolutionary events. So far, the evolutionary relationship of tryptophanyl- and tyrosyl-tRNA synthetase (TrpRS and TyrRS) remains controversial. As TrpRS and TyrRS share low sequence homology but high structural similarity, a structure-based method would be advantageous for phylogenetic analysis of the enzymes. Here, we present the first crystal structure of an archaeal TrpRS, the structure of Pyrococcus horikoshii TrpRS (pTrpRS) in complex with tryptophanyl-5' AMP (TrpAMP) at 3.0 A resolution which demonstrates more similarities to its eukaryotic counterparts. With the pTrpRS structure, we perform a more complete structure-based phylogenetic study of TrpRS and TyrRS, which for the first time includes representatives from all three domains of life. Individually, each enzyme shows a similar evolutionary profile as observed in the sequence-based phylogenetic studies. However, TyrRSs from Archaea/Eucarya cluster with TrpRSs rather than their bacterial counterparts, and the root of TrpRS locates in the archaeal branch of TyrRS, indicating the archaeal origin of TrpRS. Moreover, the short distance between TrpRS and archaeal TyrRS and that between bacterial and archaeal TrpRS, together with the wide distribution of TrpRS, suggest that the emergence of TrpRS and subsequent acquisition by Bacteria occurred at early stages of evolution.
古老而普遍存在的氨酰-tRNA 合成酶构成了研究早期进化事件的有价值的模型系统。到目前为止,色氨酰-tRNA 合成酶(TrpRS)和酪氨酸-tRNA 合成酶(TyrRS)的进化关系仍存在争议。由于 TrpRS 和 TyrRS 具有低序列同源性但具有高度结构相似性,因此基于结构的方法将有利于酶的系统发育分析。在这里,我们展示了第一个古细菌 TrpRS 的晶体结构,即 Pyrococcus horikoshii TrpRS(pTrpRS)与色氨酰-5'AMP(TrpAMP)复合物的结构,分辨率为 3.0 A,与真核生物的 TrpRS 具有更多的相似性。结合 pTrpRS 结构,我们对 TrpRS 和 TyrRS 进行了更完整的基于结构的系统发育研究,这是第一次包括来自生命三个领域的代表。单独来看,每个酶都表现出与基于序列的系统发育研究中观察到的相似的进化模式。然而,古细菌/真核生物的 TyrRS 与 TrpRS 聚类,而不是与细菌的 TyrRS 聚类,TrpRS 的根位于 TyrRS 的古细菌分支中,这表明 TrpRS 起源于古细菌。此外,TrpRS 和古细菌 TyrRS 之间以及细菌和古细菌 TrpRS 之间的短距离,以及 TrpRS 的广泛分布,表明 TrpRS 的出现以及随后在细菌中的获得发生在进化的早期阶段。