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

03 June 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Numerous reactions within metabolic pathways have been reported to occur nonenzymatically, supporting the hypothesis that life began from 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.

Keywords

protometabolism
alkene hydration
phosphoenolpyruvate
prebiotic chemistry

Supplementary materials

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Description
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Supporting Information
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NMR spectra, MS, experimental procedures
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