从铜绿假单胞菌 5' 反密码子-茎序列推导出 tRNA 的起源:反密码子-茎环假说。

IF 1.9 4区 物理与天体物理 Q2 BIOLOGY Origins of Life and Evolution of Biospheres Pub Date : 2019-06-01 Epub Date: 2019-05-10 DOI:10.1007/s11084-019-09573-w
Kenji Ikehara
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引用次数: 10

摘要

生命起源之谜至今未解。解谜的最佳途径之一是从现代生物的 DNA 和/或蛋白质数据库中找到最初生命的遗迹。了解 tRNA 的起源尤为重要,因为它是遗传信息和蛋白质氨基酸序列之间的中介。在此,我试图从铜绿假单胞菌 tRNA 基因的碱基序列中找到 tRNA 起源和进化的蛛丝马迹。首先,我们发现铜绿假单胞菌 tRNA 用于翻译 G-起始密码子(GNN)的 5' 反密码子(AntiC)茎序列是密切相关的。然后,研究了铜绿微囊藻 tRNA 的所有 42 个 5' AntiC 干序列之间的相互关系。这些关系意味着铜绿微囊藻 tRNA 起源于四个反密码子干环(AntiC-SL),它们将 GNC 密码子翻译成相应的四个氨基酸:Gly、Ala、Asp 和 Val(其中 N 是 G、C、A 或 T)。与 AntiC 干序列的情况不同,铜绿微囊藻 tRNA 的 D、T 和接受干序列无法绘制相互关系图。因此,我得出结论:四个 AntiC-SL 是最早的原始 tRNA。
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The Origin of tRNA Deduced from Pseudomonas aeruginosa 5' Anticodon-Stem Sequence : Anticodon-stem loop hypothesis.

The riddle of the origin of life is unsolved as yet. One of the best ways to solve the riddle would be to find a vestige of the first life from databases of DNA and/or protein of modern organisms. It would be, especially, important to know the origin of tRNA, because it mediates between genetic information and the amino acid sequence of a protein. Here I attempt to find a vestige of the origin and evolution of tRNA from base sequences of Pseudomonas aeruginosa tRNA gene. It was first perceived that 5' anticodon (AntiC) stem sequences of P. aeruginosa tRNA for translation of G-start codon (GNN) are intimately and mutually related. Then, mutual relations among all of the forty-two 5' AntiC stem sequences of P. aeruginosa tRNA were examined. These relationships imply that P. aeruginosa tRNA originated from four anticodon stem-loops (AntiC-SL) translating GNC codons to the corresponding four amino acids, Gly, Ala, Asp and Val (where N is G, C, A, or T). In contrast to the case of AntiC-stem sequence, a mutual relation map could not be drawn with D-, T- and acceptor-stem sequences of P. aeruginosa tRNA. Thus I conclude that the four AntiC-SLs were the first primeval tRNAs.

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来源期刊
CiteScore
3.20
自引率
15.00%
发文量
12
审稿时长
>12 weeks
期刊介绍: The subject of the origin and early evolution of life is an inseparable part of the general discipline of Astrobiology. The journal Origins of Life and Evolution of Biospheres places special importance on the interconnection as well as the interdisciplinary nature of these fields, as is reflected in its subject coverage. While any scientific study which contributes to our understanding of the origins, evolution and distribution of life in the Universe is suitable for inclusion in the journal, some examples of important areas of interest are: prebiotic chemistry and the nature of Earth''s early environment, self-replicating and self-organizing systems, the theory of the RNA world and of other possible precursor systems, and the problem of the origin of the genetic code. Early evolution of life - as revealed by such techniques as the elucidation of biochemical pathways, molecular phylogeny, the study of Precambrian sediments and fossils and of major innovations in microbial evolution - forms a second focus. As a larger and more general context for these areas, Astrobiology refers to the origin and evolution of life in a cosmic setting, and includes interstellar chemistry, planetary atmospheres and habitable zones, the organic chemistry of comets, meteorites, asteroids and other small bodies, biological adaptation to extreme environments, life detection and related areas. Experimental papers, theoretical articles and authorative literature reviews are all appropriate forms for submission to the journal. In the coming years, Astrobiology will play an even greater role in defining the journal''s coverage and keeping Origins of Life and Evolution of Biospheres well-placed in this growing interdisciplinary field.
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