In the Beginning was a Mutualism - On the Origin of Translation.

IF 1.9 4区 物理与天体物理 Q2 BIOLOGY Origins of Life and Evolution of Biospheres Pub Date : 2018-06-01 Epub Date: 2018-04-30 DOI:10.1007/s11084-018-9557-6
Marko Vitas, Andrej Dobovišek
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引用次数: 28

Abstract

The origin of translation is critical for understanding the evolution of life, including the origins of life. The canonical genetic code is one of the most dominant aspects of life on this planet, while the origin of heredity is one of the key evolutionary transitions in living world. Why the translation apparatus evolved is one of the enduring mysteries of molecular biology. Assuming the hypothesis, that during the emergence of life evolution had to first involve autocatalytic systems which only subsequently acquired the capacity of genetic heredity, we propose and discuss possible mechanisms, basic aspects of the emergence and subsequent molecular evolution of translation and ribosomes, as well as enzymes as we know them today. It is possible, in this sense, to view the ribosome as a digital-to-analogue information converter. The proposed mechanism is based on the abilities and tendencies of short RNA and polypeptides to fold and to catalyse biochemical reactions. The proposed mechanism is in concordance with the hypothesis of a possible chemical co-evolution of RNA and proteins in the origin of the genetic code or even more generally at the early evolution of life on Earth. The possible abundance and availability of monomers at prebiotic conditions are considered in the mechanism. The hypothesis that early polypeptides were folding on the RNA scaffold is also considered and mutualism in molecular evolutionary development of RNA and peptides is favoured.

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起初是一种互助主义--论翻译的起源。
翻译的起源对于理解生命进化(包括生命起源)至关重要。经典遗传密码是地球上生命最主要的方面之一,而遗传的起源则是生物界关键的进化转变之一。翻译装置为什么会进化是分子生物学的不解之谜之一。我们假设,在生命进化过程中,首先必须有自催化系统,然后才获得遗传能力。我们提出并讨论了可能的机制、翻译和核糖体以及我们今天所知的酶的出现和随后的分子进化的基本方面。从这个意义上说,我们可以把核糖体看作是一个从数字到模拟的信息转换器。所提出的机制是基于短 RNA 和多肽折叠和催化生化反应的能力和趋势。所提出的机制与 RNA 和蛋白质可能在遗传密码的起源或更广泛的地球生命早期进化过程中发生化学共同进化的假设是一致的。该机制考虑了前生物条件下单体的可能丰度和可用性。此外,还考虑了早期多肽在 RNA 支架上折叠的假设,并赞成 RNA 和多肽在分子进化发展过程中的相互影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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