Nonenzymatic Hydration of Phosphoenolpyruvate: General Conditions for Hydration in Protometabolism by Searching Across Pathways.

IF 16.1 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Angewandte Chemie International Edition Pub Date : 2024-11-18 DOI:10.1002/anie.202410698
Joris Zimmermann, Atalay Bora Basar, Joseph Moran
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Abstract

Numerous reactions within metabolic pathways have been reported to occur nonenzymatically, supporting the hypothesis that life arose upon a primitive nonenzymatic precursor to metabolism. However, most of those studies reproduce individual transformations or segments of pathways without providing a common set of conditions for classes of reactions that span multiple pathways. In this study, we search across pathways for common nonenzymatic conditions for a recurring chemical transformation in metabolism: alkene hydration. The mild conditions that we identify (Fe oxides such as green rust) apply to all hydration reactions of the rTCA cycle and gluconeogenesis, including the hydration of phosphoenolpyruvate (PEP) to 2-phosphoglycerate (2PGA), which had not previously been reported under nonenzymatic conditions. Mechanistic insights were obtained by studying analogous substrates and through anoxic and radical trapping experiments. Searching for nonenzymatic conditions across pathways provides a complementary strategy to triangulate conditions conducive to the nonenzymatic emergence of a protometabolism.

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磷酸烯醇丙酮酸的非酶水合作用:通过跨途径搜索原生代谢中水合的一般条件。
据报道,新陈代谢途径中的许多反应都是非酶促发生的,这支持了生命起源于新陈代谢的原始非酶促前体的假设。然而,这些研究大多再现了单个转化或部分途径,而没有为跨越多个途径的反应类别提供一套通用条件。在本研究中,我们跨途径寻找新陈代谢中反复出现的化学转化:烯烃水合的共同非酶条件。我们发现的温和条件(铁氧化物,如绿锈)适用于 rTCA 循环和葡萄糖生成过程中的所有水合反应,包括磷酸烯醇丙酮酸(PEP)到 2-磷酸甘油酸(2PGA)的水合反应。通过研究类似的底物以及缺氧和自由基捕获实验,我们获得了对机理的深入了解。寻找跨途径的非酶条件为三角测量原生代谢的非酶条件提供了一种补充策略。
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来源期刊
CiteScore
26.60
自引率
6.60%
发文量
3549
审稿时长
1.5 months
期刊介绍: Angewandte Chemie, a journal of the German Chemical Society (GDCh), maintains a leading position among scholarly journals in general chemistry with an impressive Impact Factor of 16.6 (2022 Journal Citation Reports, Clarivate, 2023). Published weekly in a reader-friendly format, it features new articles almost every day. Established in 1887, Angewandte Chemie is a prominent chemistry journal, offering a dynamic blend of Review-type articles, Highlights, Communications, and Research Articles on a weekly basis, making it unique in the field.
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