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一种可能的前体物一锅法合成乳清酸和丙酮酸,提示存在共同的原代谢途径。

A Plausible Prebiotic One-Pot Synthesis of Orotate and Pyruvate Suggestive of Common Protometabolic Pathways.

机构信息

Department of Chemistry, Furman University, 3300 Poinsett Hwy, Greenville, SC 29613, USA.

NSF-NASA Center for Chemical Evolution, Atlanta, GA 30332, USA.

出版信息

Angew Chem Int Ed Engl. 2022 Mar 7;61(11):e202112572. doi: 10.1002/anie.202112572. Epub 2022 Jan 27.

Abstract

A reaction between two prebiotically plausible building blocks, hydantoin and glyoxylate, generates both the nucleobase orotate, a precursor of biological pyrimidines, and pyruvate, a core metabolite in the citric acid cycle and amino acid biosynthesis. The reaction proceeds in water to provide significant yields of the two widely divergent chemical motifs. Additionally, the reaction of thiohydantoin and glyoxylate produces thioorotate in high yield under neutral aqueous conditions. The use of an open-chain thiohydantoin derivative also enables the potential pre-positioning of a nucleosidic bond prior to the synthesis of an orotate nucleoside. The observation that diverse building blocks of modern metabolism can be produced in a single reaction pot, from common reactants under mild conditions, supports the plausibility of orthogonal chemistries operating at the origins of chemical evolution.

摘要

两种前体生物 plausible 构建块,乙内酰脲和乙醛酸之间的反应,生成核碱基乳清酸盐,是生物嘧啶的前体,以及丙酮酸,柠檬酸循环和氨基酸生物合成的核心代谢物。该反应在水中进行,提供了两种广泛不同的化学基序的大量产率。此外,硫代乙内酰脲和乙醛酸的反应在中性水条件下以高产率产生硫代乳清酸盐。使用开链硫代乙内酰脲衍生物还可以在合成乳清酸核苷之前预先定位核苷键。观察到现代代谢的各种构建块可以在单个反应罐中,从温和条件下的常见反应物中产生,支持了在化学进化起源处起作用的正交化学的合理性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f38/9305436/f69cc243179b/ANIE-61-0-g005.jpg

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