Synthesis of Mixed Dinucleotides by Mechanochemistry

Molecules. 2022 May 18;27(10):3229. doi: 10.3390/molecules27103229.

Abstract

We report the synthesis of vitamin B1, B2, and B3 derived nucleotides and dinucleotides generated either through mechanochemical or solution phase chemistry. Under the explored conditions, adenosine and thiamine proved to be particularly amenable to milling conditions. Following optimization of the chemistry related to the formation pyrophosphate bonds, mixed dinucleotides of adenine and thiamine (vitamin B1), riboflavin (vitamin B2), nicotinamide riboside and 3-carboxamide 4-pyridone riboside (both vitamin B3 derivatives) were generated in good yields. Furthermore, we report an efficient synthesis of the MW+4 isotopologue of NAD+ for which deuterium incorporation is present on either side of the dinucleotidic linkage, poised for isotopic tracing experiments by mass spectrometry. Many of these mixed species are novel and present unexplored possibilities to simultaneously enhance or modulate cofactor transporters and enzymes of independent biosynthetic pathways.

Keywords: dinucleotides; mechanochemistry; nicotinamide; nucleotides; pyrophosphates; riboflavin; thiamine.

MeSH terms

  • Niacin* / metabolism
  • Riboflavin
  • Thiamine / analysis

Substances

  • Niacin
  • Riboflavin
  • Thiamine