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Acid dissociation constants of uridine-5′-diphosphate compounds determined by phosphorus nuclear magnetic resonance spectroscopy and internal pH referencing
Authors:Igor Jancan  Megan A Macnaughtan
Institution:Louisiana State University, Department of Chemistry, Baton Rouge, LA 70803, USA
Abstract:The acid dissociation constant (pKa) of small, biological molecules is an important physical property used for investigating enzyme mechanisms and inhibitor design. For phosphorus-containing molecules, the 31P nuclear magnetic resonance (NMR) chemical shift is sensitive to the local chemical environment, particularly to changes in the electronic state of the molecule. Taking advantage of this property, we present a 31P NMR approach that uses inorganic phosphate buffer as an internal pH reference to determine the pKa values of the imide and second diphosphate of uridine-5′-diphosphate compounds, including the first reported values for UDP-GlcNAc and UDP-S-GlcNAc. New methods for using inorganic phosphate buffer as an internal pH reference, involving mathematical correction factors and careful control of the chemical shift reference sample, are illustrated. A comparison of the newly determined imide and diphosphate pKa values of UDP, UDP-GlcNAc, and UDP-S-GlcNAc with other nucleotide phosphate and thio-analogs reveals the significance of the monosaccharide and sulfur position on the pKa values.
Keywords:Pi  inorganic phosphate  UDP  uridine 5&prime  -diphosphate  UDP-GlcNAc  uridine 5&prime  -diphosphate-N-acetylglucosamine  GlcNAc  N-acetylglucosamine  UDP-S-GlcNAc  uridine 5&prime  -diphosphate-thio-N-acetylglucosamine  pKa1  second diphosphate acid dissociation constant  pKa2  imide acid dissociation constant  δPi  31P chemical shift of inorganic phosphate  δP  31P chemical shift of mono-protonated diphosphate  Δδ2  31P chemical shift difference between the mono-protonated diphosphate and deprotonated diphosphate  Δδ2  31P chemical shift difference between the deprotonated diphosphate and deprotonated imide  2Jαβ  31P&ndash  31P scalar coupling constant  D2O  deuterium oxide  ADP  adenosine 5&prime  -diphosphate
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