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Unravelling the structural complexity of glycolipids with cryogenic infrared spectroscopy.

Carla KirschbaumKim GreisEike MuchaLisa KainShenglou DengAndreas ZappeSandy GewinnerWieland SchöllkopfGert von HeldenGerard MeijerPaul B SavageMateusz MarianskiLuc TeytonKevin Pagel
Published in: Nature communications (2021)
Glycolipids are complex glycoconjugates composed of a glycan headgroup and a lipid moiety. Their modular biosynthesis creates a vast amount of diverse and often isomeric structures, which fulfill highly specific biological functions. To date, no gold-standard analytical technique can provide a comprehensive structural elucidation of complex glycolipids, and insufficient tools for isomer distinction can lead to wrong assignments. Herein we use cryogenic gas-phase infrared spectroscopy to systematically investigate different kinds of isomerism in immunologically relevant glycolipids. We show that all structural features, including isomeric glycan headgroups, anomeric configurations and different lipid moieties, can be unambiguously resolved by diagnostic spectroscopic fingerprints in a narrow spectral range. The results allow for the characterization of isomeric glycolipid mixtures and biological applications.
Keyphrases
  • fatty acid
  • molecular docking
  • optical coherence tomography
  • cell surface
  • magnetic resonance imaging
  • mass spectrometry
  • liquid chromatography
  • molecular dynamics simulations
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