4.6 Article

Application of Paramagnetic NMR-Validated Molecular Dynamics Simulation to the Analysis of a Conformational Ensemble of a Branched Oligosaccharide

Journal

MOLECULES
Volume 17, Issue 6, Pages 6658-6671

Publisher

MDPI
DOI: 10.3390/molecules17066658

Keywords

oligosaccharide; molecular dynamics; NMR spectroscopy; lanthanide; pseudocontact shift; ganglioside

Funding

  1. KAKENHI of MEXT [20107004, 21370050, 24750170]
  2. CREST of JST
  3. Grants-in-Aid for Scientific Research [24750170] Funding Source: KAKEN

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Oligosaccharides of biological importance often exhibit branched covalent structures and dynamic conformational multiplicities. Here we report the application of a method that we developed, which combined molecular dynamics (MD) simulations and lanthanide-assisted paramagnetic NMR spectroscopy, to evaluate the dynamic conformational ensemble of a branched oligosaccharide. A lanthanide-chelating tag was attached to the reducing end of the branched tetrasaccharide of GM2 ganglioside to observe pseudocontact shifts as the source of long distance information for validating the conformational ensemble derived from MD simulations. By inspecting the results, the conformational space of the GM2 tetrasaccharide was compared with that of its nonbranched derivative, the GM3 trisaccharide.

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