Liao D, Dennis P P
Canadian Institute for Advanced Research, University of British Columbia, Vancouver.
J Mol Evol. 1994 Apr;38(4):405-19. doi: 10.1007/BF00163157.
Available sequences that correspond to the E. coli ribosomal proteins L11, L1, L10, and L12 from eubacteria, archaebacteria, and eukaryotes have been aligned. The alignments were analyzed qualitatively for shared structural features and for conservation of deletions or insertions. The alignments were further subjected to quantitative phylogenetic analysis, and the amino acid identity between selected pairs of sequences was calculated. In general, eubacteria, archaebacteria, and eukaryotes each form coherent and well-resolved nonoverlapping phylogenetic domains. The degree of diversity of the four proteins between the three groups is not uniform. For L11, the eubacterial and archaebacterial proteins are very similar whereas the eukaryotic L11 is clearly less similar. In contrast, in the case of the L12 proteins and to a lesser extent the L10 proteins, the archaebacterial and eukaryotic proteins are similar whereas the eubacterial proteins are different. The eukaryotic L1 equivalent protein has yet to be identified. If the root of the universal tree is near or within the eubacterial domain, our ribosomal protein-based phylogenies indicate that archaebacteria are monophyletic. The eukaryotic lineage appears to originate either near or within the archaebacterial domain.
已将来自真细菌、古细菌和真核生物的与大肠杆菌核糖体蛋白L11、L1、L10和L12相对应的可用序列进行了比对。对这些比对结果进行了定性分析,以寻找共同的结构特征以及缺失或插入的保守性。这些比对结果还进一步进行了定量系统发育分析,并计算了选定序列对之间的氨基酸同一性。一般来说,真细菌、古细菌和真核生物各自形成连贯且解析良好的非重叠系统发育域。这三组之间四种蛋白质的多样性程度并不一致。对于L11,真细菌和古细菌的蛋白质非常相似,而真核生物的L11明显不那么相似。相比之下,就L12蛋白质而言,以及在较小程度上就L10蛋白质而言,古细菌和真核生物的蛋白质相似,而真细菌的蛋白质则不同。真核生物中与L1等效的蛋白质尚未确定。如果通用树的根在真细菌域附近或在其内部,那么我们基于核糖体蛋白的系统发育分析表明古细菌是单系的。真核生物谱系似乎起源于古细菌域附近或其内部。