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最后普遍共同祖先黎明时期的 RNA 组建议。

A Proposal for the RNAome at the Dawn of the Last Universal Common Ancestor.

机构信息

Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Ciudad de México 04510, Mexico.

Network of Researchers on the Chemical Emergence of Life (NoRCEL), Leeds LS7 3RB, UK.

出版信息

Genes (Basel). 2024 Sep 11;15(9):1195. doi: 10.3390/genes15091195.

Abstract

From the most ancient RNAs, which followed an RNY pattern and folded into small hairpins, modern RNA molecules evolved by two different pathways, dubbed Extended Genetic Code 1 and 2, finally conforming to the current standard genetic code. Herein, we describe the evolutionary path of the RNAome based on these evolutionary routes. In general, all the RNA molecules analysed contain portions encoded by both genetic codes, but crucial features seem to be better recovered by Extended 2 triplets. In particular, the whole Peptidyl Transferase Centre, anti-Shine-Dalgarno motif, and a characteristic quadruplet of the RNA moiety of RNAse-P are clearly unveiled. Differences between bacteria and archaea are also detected; in most cases, the biological sequences are more stable than their controls. We then describe an evolutionary trajectory of the RNAome formation, based on two complementary evolutionary routes: one leading to the formation of essentials, while the other complemented the molecules, with the cooperative assembly of their constituents giving rise to modern RNAs.

摘要

从最初遵循 RNY 模式并折叠成小发夹的 RNA 开始,现代 RNA 分子通过两种不同的途径进化,分别称为扩展遗传密码 1 和 2,最终符合当前的标准遗传密码。在此,我们根据这些进化途径描述 RNA 组的进化路径。一般来说,所有分析的 RNA 分子都包含由两个遗传密码编码的部分,但关键特征似乎通过扩展 2 三联体更好地恢复。特别是,整个肽基转移酶中心、反 Shine-Dalgarno 基序和 RNAse-P 的 RNA 部分的一个特征四联体都清晰地揭示出来。还检测到细菌和古菌之间的差异;在大多数情况下,生物序列比其对照物更稳定。然后,我们根据两种互补的进化途径描述了 RNA 组形成的进化轨迹:一条途径导致必需物质的形成,而另一条途径则补充了分子,它们的组成部分的协同组装导致了现代 RNA 的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e102/11431127/15a406386565/genes-15-01195-g001.jpg

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