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经典嘧啶和嘌呤核糖核苷酸的前体合成。

A Prebiotic Synthesis of Canonical Pyrimidine and Purine Ribonucleotides.

机构信息

1 Firebird Biomolecular Sciences LLC, Alachua, Florida.

2 Buchholz High School, Gainesville, Florida.

出版信息

Astrobiology. 2019 May;19(5):669-674. doi: 10.1089/ast.2018.1935. Epub 2019 Jan 30.

Abstract

The "RNA first" model for the origin of life holds that RNA emerged spontaneously on early Earth and developed into life through its dual capabilities for genetics and catalysis. The model's central weakness is the difficulty of making its building blocks, in particular, the glycosidic bond joining nucleobases to ribose. Thus, the focus of much of the modern literature on the topic is directed toward solving this difficulty and includes elegant, though indirect, methods for making this bond. Here, we report that the glycosidic bond in canonical pyrimidine and purine ribonucleotides can be formed by direct coupling of cyclic carbohydrate phosphates with free nucleobases, all reported to be available by experimentally supported pathways that might have operated on early Earth.

摘要

生命起源的“RNA 优先”模型认为,RNA 自发出现在早期地球上,并通过其遗传和催化的双重能力发展成为生命。该模型的核心弱点是难以制造其构建块,特别是将碱基连接到核糖上的糖苷键。因此,现代文献的很大一部分重点都集中在解决这个难题上,包括制造这种键的优雅但间接的方法。在这里,我们报告说,在经典嘧啶和嘌呤核糖核苷酸中,糖苷键可以通过环状碳水化合物磷酸盐与游离碱基的直接偶联形成,所有这些碱基据报道都可以通过可能在早期地球上运行的实验支持途径获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85a2/6486662/8fcb824fc3cb/fig-1.jpg

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