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Thiophosphate photochemistry enables prebiotic access to sugars and terpenoid precursors
ChemistryNature Chemistry

Thiophosphate photochemistry enables prebiotic access to sugars and terpenoid precursors

D. J. Ritson and J. D. Sutherland

Discover how thiophosphate revolutionizes prebiotic chemistry in groundbreaking research by Dougal J. Ritson and John D. Sutherland. This study uncovers its vital role in enhancing prebiotic reactions and enabling critical sugar syntheses that could reshape our understanding of life's origins.... show more
Abstract
Over the past few years, evidence has accrued that demonstrates that terrestrial photochemical reactions could have provided numerous (proto)biomolecules with implications for the origin of life. This chemistry simply relies on UV light, inorganic sulfur species and hydrogen cyanide. Recently, we reported that, under the same conditions, reduced phosphorus species, such as those delivered by meteorites, can be oxidized to orthophosphate, generating thiophosphate in the process. Here we describe an investigation of the properties of thiophosphate as well as additional possible means for its formation on primitive Earth. We show that several reported prebiotic reactions, including the photoreduction of thioamides, carbonyl groups and cyanohydrins, can be markedly improved, and that tetroses and pentoses can be accessed from hydrogen cyanide through a Kiliani–Fischer-type process without progressing to higher sugars. We also demonstrate that thiophosphate allows photochemical reductive aminations, and that thiophosphate chemistry allows a plausible prebiotic synthesis of the C5 moieties used in extant terpene and terpenoid biosynthesis, namely dimethylallyl alcohol and isopentenyl alcohol.
Publisher
Nature Chemistry
Published On
Jul 13, 2023
Authors
Dougal J. Ritson, John D. Sutherland
Tags
thiophosphateprebiotic chemistrysugar synthesisphotochemical reactionsdimethylallyl alcoholisopentenyl alcoholterpene biosynthesis
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