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地球上生命起源的原始寡核苷酸 RNA。

Primitive Oligomeric RNAs at the Origins of Life on Earth.

机构信息

Faculty of Medicine, Université Grenoble Alpes, Laboratory AGEIS EA 7407 Tools for e-Gnosis Medical, 38700 Grenoble, France.

Académie des Sciences, Section Biologie Integrative, 75006 Paris, France.

出版信息

Int J Mol Sci. 2023 Jan 23;24(3):2274. doi: 10.3390/ijms24032274.

Abstract

There are several theories on the origin of life, which differ by choosing the preponderant factor of emergence: main function (autocatalysis versus replication), initial location (black smokers versus ponds) or first molecule (RNA versus DNA). Among the two last ones, the first assumes that an RNA world involving a collaboration of small RNAs with amino-acids pre-existed and the second that DNA-enzyme-lipid complexes existed first. The debate between these classic theories is not closed and the arguments for one or the other of these theories have recently fueled a debate in which the two have a high degree of likelihood. It therefore seems interesting to propose a third intermediate way, based on the existence of an RNA that may have existed before the latter stages postulated by these theories, and therefore may be the missing link towards a common origin of them. To search for a possible ancestral structure, we propose as candidate a small RNA existing in ring or hairpin form in the early stages of life, which could have acted as a "proto-ribosome" by favoring the synthesis of the first peptides. Remnants of this putative candidate RNA exist in molecules nowadays involved in the ribosomal factory, the concentrations of these relics depending on the seniority of these molecules within the translation process.

摘要

关于生命的起源有几种理论,这些理论的差异在于选择主导因素:主要功能(自动催化与复制)、初始位置(黑烟囱与池塘)或第一个分子(RNA 与 DNA)。在最后两种理论中,第一种理论假设存在一个涉及小 RNA 与氨基酸合作的 RNA 世界,第二种理论假设 DNA-酶-脂质复合物首先存在。这两种经典理论之间的争论尚未结束,最近,支持其中一种理论的论据引发了一场争论,这场争论认为这两种理论都有很高的可能性。因此,基于这些理论后假设阶段之前可能存在的 RNA 存在,提出第三种中间方式似乎很有趣,因此它可能是它们共同起源的缺失环节。为了寻找可能的祖先结构,我们提出一个候选者,即存在于早期生命中的环状或发夹状的小 RNA,它可以通过促进第一个肽的合成来充当“原核核糖体”。这种假定候选 RNA 的残留物存在于当今参与核糖体工厂的分子中,这些残留物的浓度取决于这些分子在翻译过程中的资历。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eaeb/9916791/653ce26c69c7/ijms-24-02274-g001.jpg

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