アミノ酸がRNAの起源に関与:新研究(Amino acids as catalysts in the emergence of RNA)

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2025-06-05 ミュンヘン大学(LMU)

ミュンヘン大学の研究チームは、アミノ酸がRNAの重合反応を促進する触媒として機能することを発見しました。これはRNAとアミノ酸が協調的に進化した可能性を示すもので、「RNAワールド仮説」に新たな視点を与えます。実験では、アミノ酸のアミノ基が酸塩基触媒として作用し、RNA形成を最大100倍促進。弱アルカリ性・低塩環境での反応とRNA複製も確認され、生命の分子起源と進化の仕組みに対する理解が深まりました。成果は『Nature Communications』誌に掲載。

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常温アルカリ性条件下でアミノ酸がRNA形成を触媒する Amino acids catalyse RNA formation under ambient alkaline conditions

Saroj K. Rout,Sreekar Wunnava,Miroslav Krepl,Giuseppe Cassone,Judit E. Šponer,Christof B. Mast,Matthew W. Powner & Dieter Braun
Nature Communications  Published:04 June 2025
DOI:https://doi.org/10.1038/s41467-025-60359-3

アミノ酸がRNAの起源に関与:新研究(Amino acids as catalysts in the emergence of RNA)

Abstract

RNA and proteins are the foundation of life and a natural starting point to explore its origins. However, the prebiotic relationship between the two is asymmetric. While RNA evolved to assemble proteins from amino acids, a significant mirror-symmetric effect of amino acids to trigger the synthesis of RNA was missing. We describe ambient alkaline conditions where amino acids, without additional chemical activators, promote RNA copolymerisation more than 100-fold, starting from prebiotically plausible ribonucleoside-2′,3′-cyclic phosphates. The observed effect is explained by acid-base catalysis, with optimal efficiency at pH values near the amine pKaH. The fold-change in oligomerisation yield is nucleobase-selective, resulting in increased compositional diversity necessary for subsequent molecular evolution and favouring the formation of natural 3′-5′ linkages. The elevated pH offers recycling of oligonucleotide sequences back to 2′,3′-cyclic phosphates, providing conditions for high-fidelity replication by templated ligation. The findings reveal a clear functional role of amino acids in the evolution of RNA earlier than previously assumed.

細胞遺伝子工学
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