生命起源早期RNA世界中的嘌呤化学:从RNA和核碱基病变到当前的关键代谢途径。

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
ChemBioChem Pub Date : 2025-04-16 DOI:10.1002/cbic.202500035
Jean-Luc Décout, Marie-Christine Maurel
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引用次数: 0

摘要

在生命早期,RNA可能起着核心作用,在相应的RNA世界中,主要产生的氨基酸和小肽必须不断地与RNA、核糖核苷和核碱基,特别是嘌呤发生反应。一个rna -肽的世界和关键的代谢途径已经从相应的化学修饰,如核糖体进行的翻译过程中出现。一些有趣的嘌呤循环反应和相应的核糖核苷(t)在合理的益生元条件下进行,并回顾了描述的RNA化学损伤,以期突出它们与嘌呤和组氨酸生物合成途径的一些主要步骤的联系,以一种有趣的方式,通过两种关键代谢物,腺苷5'-三磷酸和咪唑核糖核苷酸5-氨基咪唑-4-羧基酰胺核糖核苷酸相关。嘌呤的开环反应是获得咪唑核糖核苷酸和甲脒嘧啶核糖核苷酸的有效途径,这表明生物合成途径的第一步是从RNA和核糖核苷酸(t)损伤开始的。同时,根据嘌呤基腺嘌呤的n6衍生物与组氨酸的结构关系,综述了在益生元条件下嘌呤基腺嘌呤衍生物的形成及其催化性能的研究进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Purine Chemistry in the Early RNA World at the Origins of Life: From RNA and Nucleobases Lesions to Current Key Metabolic Routes.

In early life, RNA probably played the central role and, in the corresponding RNA world, the main produced amino acids and small peptides had to react continuously with RNA, ribonucleos(t)ides and nucleobases, especially with purines. A RNA-peptide world and key metabolic pathways have emerged from the corresponding chemical modifications such as the translation process performed by the ribosome. Some interesting reactions of the purine bicycle and of the corresponding ribonucleos(t)ides are performed under plausible prebiotic conditions and described RNA chemical lesions are reviewed with the prospect to highlight their connection with some major steps of the purine and histidine biosynthetic pathways that are, in an intriguingly way, related through two key metabolites, adenosine 5'-triphosphate and the imidazole ribonucleotide 5-aminoimidazole-4-carboxamide ribonucleotide. Ring-opening reactions of purines stand out as efficient accesses to imidazole ribonucleotides and to formamidopyrimidine (Fapy) ribonucleotides suggesting that biosynthetic pathway' first steps have emerged from RNA and ribonucleos(t)ide damages. Also, are summarized the works on the formation and catalytic properties, under plausible prebiotic conditions, of N6-derivatives of the purine base adenine as potential surrogates of histidine in catalysis accordingly to their structural relationship.

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来源期刊
ChemBioChem
ChemBioChem 生物-生化与分子生物学
CiteScore
6.10
自引率
3.10%
发文量
407
审稿时长
1 months
期刊介绍: ChemBioChem (Impact Factor 2018: 2.641) publishes important breakthroughs across all areas at the interface of chemistry and biology, including the fields of chemical biology, bioorganic chemistry, bioinorganic chemistry, synthetic biology, biocatalysis, bionanotechnology, and biomaterials. It is published on behalf of Chemistry Europe, an association of 16 European chemical societies, and supported by the Asian Chemical Editorial Society (ACES).
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