Mitchell Cancer Institute, Department of Pharmacology, College of Medicine, University of South Alabama, 1660 Springhill Avenue, Mobile, AL 36604, USA.
Molecules. 2022 May 18;27(10):3229. doi: 10.3390/molecules27103229.
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.
我们报告了通过机械化学或溶液相化学合成的源自维生素 B1、B2 和 B3 的核苷酸和二核苷酸。在探索的条件下,腺苷和硫胺素被证明特别适合于研磨条件。在优化与焦磷酸键形成有关的化学后,腺嘌呤和硫胺素(维生素 B1)、核黄素(维生素 B2)、烟酰胺核苷和 3-羧酰胺 4-吡啶酮核苷(均为维生素 B3 衍生物)的混合二核苷酸以良好的收率生成。此外,我们报告了一种高效的 NAD 的 MW+4 同位素类似物的合成方法,其中二核苷酸键的两侧都存在氘掺入,为通过质谱进行同位素追踪实验做好了准备。这些混合物种中的许多都是新颖的,为同时增强或调节独立生物合成途径的辅助因子转运蛋白和酶提供了探索的可能性。