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19 F Fast Magic-Angle Spinning NMR Spectroscopy on Microcrystalline Complexes of Fluorinated Ligands and the Carbohydrate Recognition Domain of Galectin-3.

Roza KalabekovaCaitlin M QuinnKumar Tekwani MovellanAngela M GronenbornMikael AkkeTatyana Polenova
Published in: Biochemistry (2024)
Structural characterization of protein-ligand binding interfaces at atomic resolution is essential for improving the design of specific and potent inhibitors. Herein, we explored fast 19 F- and 1 H-detected magic angle spinning NMR spectroscopy to investigate the interaction between two fluorinated ligand diastereomers with the microcrystalline galectin-3 carbohydrate recognition domain. The detailed environment around the fluorine atoms was mapped by 2D 13 C- 19 F and 1 H- 19 F dipolar correlation experiments and permitted characterization of the binding interface. Our results demonstrate that 19 F MAS NMR is a powerful tool for detailed characterization of protein-ligand interfaces and protein interactions at the atomic level.
Keyphrases
  • solid state
  • high resolution
  • protein protein
  • binding protein
  • amino acid
  • magnetic resonance
  • computed tomography
  • small molecule
  • mass spectrometry
  • positron emission tomography
  • anti inflammatory
  • pet imaging