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Aminoacyl-tRNA synthetase classes and groups in prokaryotes

机译:原核生物中的氨酰-tRNA合成酶类别和组

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Knowledge on the evolution of aminoacyl-tRNA synthetases is crucial to studies on the origins of life. The relationships between the different aminoacyl-tRNA synthetase specificities in prokaryotic organisms are studied in this work. We reconstructed the ancestor sequences and the phylogenetic relationships utilizing the Maximum Likelihood method. The results suggest that in class I the evolution of the N-terminal segment was strongly influenced by the amino acid hydropathy in both domains of prokaryotes. The results for the C-terminal segments of class I were different in the two domains, indicating that its evolution was strongly influenced by the specific types of tRNA modification in each domain. The class 11 groups in Archaea were more heterogeneous with respect to the hydropathy of amino acids, indicating the interference of other influences. In bacteria, the configuration was also complex but the overall consensual division in two groups was maintained, group IIa forming a single branch with the five hydroapathetic amino acid specificities and group IIb containing the specificities for the moderately hydrophobic together with the hydrophilic amino acids. It is indicated that the aminoacyl-tRNA symbetase in both domains were subjected to different selective forces in diverse parts of the proteins, resulting in complex phylogenetic patterns. Crown Copyright (c) 2007 Published by Elsevier Ltd. All rights reserved.
机译:氨酰基-tRNA合成酶的进化知识对生命起源的研究至关重要。在这项工作中研究了原核生物中不同的氨酰-tRNA合成酶特异性之间的关系。我们使用最大似然法重建祖先序列和系统发育关系。结果表明,在I类中,原核生物的两个结构域中的氨基酸亲水性都强烈影响N末端片段的进化。 I类C末端片段在两个结构域中的结果不同,表明其进化受到每个结构域中tRNA修饰特定类型的强烈影响。古细菌中的第11类组在氨基酸的亲水性方面更具异质性,表明其他因素的干扰。在细菌中,构型也很复杂,但仍维持两组的整体共识性划分,IIa组与五个亲水性氨基酸特异性形成单个分支,IIb组包含中等疏水性以及亲水性氨基酸的特异性。结果表明,两个结构域中的氨酰基-tRNA糖基化酶在蛋白质的不同部位受到不同的选择力,从而导致复杂的系统发育模式。 Crown版权所有(c)2007,由Elsevier Ltd.发行。保留所有权利。

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