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Relicts and models of the RNA world

机译:RNA世界的遗物和模型

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It is widely believed that the current DNA–RNA–protein-based life forms have evolved from preceding RNA–protein-based life forms, and these again, from mere RNA replicons. By rationale, it can be assumed that the early RNA replicons were fully heterotrophic in terms of obtaining all their building blocks from their environment. In the absence of protein catalysts, their essential life functions had to be mediated by simple functional structures and mechanisms, such as RNA secondary structures, RNA–RNA interactions and RNA-mediated catalysis, and possibly by catalytic minerals or clays. The central role of RNA catalysts in early life forms is supported by the fact that several catalytic RNAs still perform central biological functions in current life forms, and at least some of these may be derived as molecular relicts from the early RNA-based life. The RNA-catalysed metabolic reactions and molecular fossils are more conserved in the eukaryotic life forms than in the prokaryotes, suggesting that the linear eukaryote genomes may more closely resemble the structure and function of the early RNA replicons, than what do the circular prokaryote genomes. Present-day RNA viruses and viroids utilize ultimately simple life strategies, which may be similar to those used by the early RNA replicons. Thus, molecular and functional properties of viruses and viroids may be considered as examples or models of the structures and replication mechanisms, which might have been used for the replication of the early biopolymers.
机译:人们普遍认为,当前基于DNA-RNA-蛋白质的生命形式已经从先前的基于RNA-蛋白质的生命形式发展而来,而这些又一次仅仅是基于RNA复制子。从理论上讲,可以假定早期的RNA复制子在从环境中获得所有构件方面是完全异养的。在没有蛋白质催化剂的情况下,必须通过简单的功能结构和机制(例如RNA二级结构,RNA-RNA相互作用和RNA介导的催化作用)来介导它们的基本生命功能,并可能通过催化矿物或粘土来介导它们。 RNA催化剂在早期生命形式中的核心作用得到了以下事实的支持:几种催化性RNA仍在当前生命形式中发挥核心生物学功能,并且其中至少一些可以衍生自基于RNA的早期生命的分子遗迹。 RNA催化的代谢反应和分子化石在真核生物中比在原核生物中更保守,这表明线性的真核生物基因组比环状的原核生物基因组更类似于早期RNA复制子的结构和功能。目前的RNA病毒和类病毒最终利用简单的生命策略,这可能与早期RNA复制子所使用的策略相似。因此,可以将病毒和类病毒的分子和功能特性视为结构和复制机制的实例或模型,这些结构或复制机制可能已用于早期生物聚合物的复制。

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