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March 21, 2026Life0 citationsOpen Access

The Formose Reaction with SO2: A Computational Study

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ESEmily M. SissonJKJeremy Kua

Key Points

  • The study aims to understand how SO2 and H2SO3 affect the thermodynamics of the formose reaction's autocatalytic cycle.
  • Examined the interaction of SO2 and H2SO3 with aldehyde and alcohol groups.
  • Modeled the formation of bisulfite analogs of formose proto-metabolites.
  • Analyzed catalytic effects of bisulfite on aldol additions and the retroaldol step.
  • SO2 and H2SO3 form bisulfite derivatives that enhance specific reaction pathways.
  • Bisulfite reduces the occurrence of the Cannizzaro side-reaction.
  • Thermodynamic stabilization of ribose occurs, albeit modestly, compared to C5 aldose diastereomers.

Abstract

This study examines the influence of SO2 and its hydrate H2SO3 on the free energies of the core autocatalytic cycle of the formose reaction. We find that SO2 and H2SO3 readily condense with aldehyde and alcohol functional groups to form bisulfite analogs of formose proto-metabolites under modeled conditions. The bisulfite functional group can provide intramolecular catalytic enhancement in specific isomers towards aldol additions and the retroaldol step that regenerates two equivalents of glycolaldehyde from tetrose. The bisulfite moiety reduces the favorability of the parasitic Cannizzaro side-reaction both thermodynamically and kinetically, thus potentially furnishing more throughput towards forming sugars. As a prebiotic analog to phosphate, we find that bisulfite slightly stabilizes ribose over its C5 aldose diastereomers thermodynamically, although the effect is modest and may be influenced by solution dynamics.

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Cite This Study

Sisson et al. (2026) studied this question.

synapsesocial.com/papers/69be36bf6e48c4981c675dbbhttps://doi.org/10.3390/life16030513
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