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转运RNA旁系同源物:遗传密码与氨基酸生物合成共同进化及生命古菌起源的证据

Transfer RNA paralogs: evidence for genetic code-amino acid biosynthesis coevolution and an archaeal root of life.

作者信息

Xue Hong, Tong Ka-Lok, Marck Christian, Grosjean Henri, Wong J Tze-Fei

机构信息

Department of Biochemistry and Applied Genomics Center, Hong Kong University of Science and Technology, Hong Kong, China.

出版信息

Gene. 2003 May 22;310:59-66. doi: 10.1016/s0378-1119(03)00552-3.

Abstract

A search has been performed on 2878 tRNA sequences from 60 different genomes in order to detect the existence of closely related 'alloacceptor' tRNAs accepting dissimilar amino acids that could be paralogs generated by gene duplications. This has led to the identification of extremely conserved tRNA(Phe)-tRNA(Tyr) pairs displaying as high as 94% identity between them, and also other potentially paralogous tRNA pairs in archaeal species. These paralogous pairs are enriched for amino acid pairs belonging to the same amino acid biosynthetic family, thus providing evidence for the coevolution of genetic code and amino acid biosynthesis. Overall, the genetic distances between alloacceptor tRNAs yield estimates of how closely clustered in sequence space are the tRNAs in a genome. Among 34 Bacteria, 18 Archaea and 8 Eukarya, Methanopyrus kandleri and Aeropyrum pernix have yielded the lowest alloacceptor distances and largest number of paralogous pairs. Based on a cluster-dispersion model of tRNA evolution, such tight alloacceptor clustering is a measure of primitiveness of tRNA genotypes, and places last universal common ancestor (LUCA) between the branches leading to these two archaea in the tRNA phylogenetic tree.

摘要

为了检测是否存在密切相关的“别构受体”tRNA,这些tRNA能接受不同氨基酸,可能是由基因复制产生的旁系同源物,我们对来自60个不同基因组的2878个tRNA序列进行了搜索。这导致鉴定出了极其保守的tRNA(苯丙氨酸)-tRNA(酪氨酸)对,它们之间的同一性高达94%,同时还在古细菌物种中发现了其他潜在的旁系同源tRNA对。这些旁系同源对富含属于同一氨基酸生物合成家族的氨基酸对,从而为遗传密码和氨基酸生物合成的共同进化提供了证据。总体而言,别构受体tRNA之间的遗传距离给出了一个基因组中tRNA在序列空间中聚集程度的估计。在34种细菌、18种古细菌和8种真核生物中,坎氏甲烷嗜热菌和嗜酸嗜热栖热菌的别构受体距离最低,旁系同源对数量最多。基于tRNA进化的聚类-离散模型,这种紧密的别构受体聚类是tRNA基因型原始性的一种度量,并将最后一个普遍共同祖先(LUCA)置于tRNA系统发育树中通向这两种古细菌的分支之间。

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