Login / Signup

Conformational State of Fenamates at the Membrane Interface: A MAS NOESY Study.

Ilya A KhodovKonstantin V BelovDaniel HusterHolger A Scheidt
Published in: Membranes (2023)
The present work analyzes the 1 H NOESY MAS NMR spectra of three fenamates (mefenamic, tolfenamic, and flufenamic acids) localized in the lipid-water interface of phosphatidyloleoylphosphatidylcholine (POPC) membranes. The observed cross-peaks in the two-dimensional NMR spectra characterized intramolecular proximities between the hydrogen atoms of the fenamates as well as intermolecular interactions between the fenamates and POPC molecules. The peak amplitude normalization for an improved cross-relaxation (PANIC) approach, the isolated spin-pair approximation (ISPA) model, and the two-position exchange model were used to calculate the interproton distances indicative of specific conformations of the fenamates. The results showed that the proportions of the A+C and B+D conformer groups of mefenamic and tolfenamic acids in the presence of POPC were comparable within the experimental error and amounted to 47.8%/52.2% and 47.7%/52.3%, respectively. In contrast, these proportions for the flufenamic acid conformers differed and amounted to 56.6%/43.4%. This allowed us to conclude that when they bind to the POPC model lipid membrane, fenamate molecules change their conformational equilibria.
Keyphrases
  • magnetic resonance
  • single molecule
  • density functional theory
  • molecular dynamics
  • molecular dynamics simulations
  • high resolution
  • fatty acid
  • ionic liquid
  • room temperature
  • contrast enhanced