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从进化角度看必需 RNA 核苷酸序列的信息梯度。

Information Gradient among Nucleotide Sequences of Essential RNAs from an Evolutionary Perspective.

机构信息

Laboratory AGEIS EA 7407, Team Tools for e-Gnosis Medical & Labcom CNRS/UGA/OrangeLabs Telecom4Health, Faculty of Medicine, University Grenoble Alpes (UGA), 38700 La Tronche, France.

ENSI-Ecole Nationale des Sciences de l'Informatique, Campus Universitaire de la Manouba, La Manouba 2010, Tunisia.

出版信息

Int J Mol Sci. 2024 Jul 9;25(14):7521. doi: 10.3390/ijms25147521.

Abstract

We hypothesize that the first ancestral "protocell" molecular structures, i.e., the first RNAs and peptides that gradually transformed into real cells once the Earth had cooled sufficiently for organic molecules to appear, have left traces in the RNAs and the genes in present cells. We propose a circular RNA that could have been one of these ancestral structures whose vestigial pentameric subsequences would mark the evolution from this key moment when the protocells began to join with living organisms. In particular, we propose that, in present RNAs (ribosomal or messenger), which play an important role in the metabolism of current cells, we look for traces of the proposed primitive structure in the form of pentamers (or longer fragments) that belong to their nucleotide sequence. The result obtained can be summarized in the existence of a gradient of occurrence of such pentamers, with a high frequency for the most vital functions (protein synthesis, nucleic synthesis, cell respiration, etc.). This gradient is also visible between organisms, from the oldest (Archaea) to the most recent (Eukaryotes) in the evolution of species.

摘要

我们假设,第一个原始“原细胞”分子结构,即第一批 RNA 和肽,一旦地球冷却到足以出现有机分子,就逐渐演变成真正的细胞。我们提出了一种环状 RNA,它可能是这些原始结构之一,其残余的五聚体序列将标志着从这个关键时刻开始,原细胞开始与生物体结合的进化。具体来说,我们提出,在当前细胞代谢中发挥重要作用的核糖体或信使 RNA 中,我们以属于其核苷酸序列的五聚体(或更长片段)的形式寻找所提出的原始结构的痕迹。所获得的结果可以概括为存在这样的五聚体发生的梯度,对于最关键的功能(蛋白质合成、核酸合成、细胞呼吸等)的发生频率较高。在物种的进化过程中,这种梯度也存在于生物体之间,从最古老的(古菌)到最新的(真核生物)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d637/11277137/4ac4ec3a28df/ijms-25-07521-g001.jpg

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