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基于延伸因子1α和2的蛋白质系统发育推断动基体原生动物的系统发育位置

Phylogenetic position of kinetoplastid protozoa inferred from the protein phylogenies of elongation factors 1alpha and 2.

作者信息

Nakamura Y, Hashimoto T, Kamaishi T, Adachi J, Nakamura F, Okamoto K, Hasegawa M

机构信息

Laboratory of Gene Manipulation, Showa University, Shinagawa-ku, Tokyo.

出版信息

J Biochem. 1996 Jan;119(1):70-9. doi: 10.1093/oxfordjournals.jbchem.a021218.

Abstract

Partial regions of the mRNA encoding a major part of translation elongation factor 2 (EF-2) from a kinetoplastid protozoan, Trypanosoma cruzi, were amplified by means of polymerase chain reaction and their primary structures were analyzed. The deduced amino acid sequence was aligned with those of other eukaryotic and archaebacterial EF-2s, and the phylogenetic relationships among eukaryotes were inferred by the maximum likelihood (ML) method. ML analyses of EF-2 phylogeny using six different stochastic models of amino acid substitutions consistently suggested that the phylogenetic position of T. cruzi is likely to be closer to higher eukaryotes than that inferred from the phylogeny of small subunit ribosomal RNA (SrRNA). These results are consistent with those for the elongation factor 1alpha (EF-1alpha) phylogeny. When the EF-1alpha and EF-2 phylogenies were totally evaluated, it became much clearer that the divergence of T. cruzi occurred later than that of a mitochondrion-lacking protozoan, Entamoeba histolytica, although this is not conclusive.

摘要

利用聚合酶链反应扩增了来自动基体原生动物克氏锥虫的编码翻译延伸因子2(EF-2)主要部分的mRNA的部分区域,并分析了它们的一级结构。将推导的氨基酸序列与其他真核生物和古细菌的EF-2序列进行比对,并通过最大似然(ML)方法推断真核生物之间的系统发育关系。使用六种不同的氨基酸替换随机模型对EF-2系统发育进行的ML分析一致表明,克氏锥虫的系统发育位置可能比从小亚基核糖体RNA(SrRNA)系统发育推断的位置更接近高等真核生物。这些结果与延伸因子1α(EF-1α)系统发育的结果一致。当对EF-1α和EF-2系统发育进行全面评估时,虽然尚无定论,但克氏锥虫的分化发生在缺乏线粒体的原生动物溶组织内阿米巴之后这一点变得更加清晰。

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Phylogenetic place of kinetoplastid protozoa inferred from a protein phylogeny of elongation factor 1 alpha.
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