Conformational Flexibility of the Group B Meningococcal Polysaccharide in Solution
- 13 February 2003
- journal article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 125 (10) , 2930-2939
- https://doi.org/10.1021/ja0210087
Abstract
To elucidate the role of secondary structure in the immune response against alpha(2-->8)-linked polysialic acid, the capsular polysaccharide of Group B meningococci, we have investigated its solution dynamics by using specific models of molecular motion and hydrodynamic modeling to interpret experimental NMR data. (13)C-[(1)H] NMR relaxation times and steady-state NOE enhancements were measured for two aqueous solutions of alpha(2-->8)-linked sialic acid polysaccharides. Each contained a unique distribution of polysaccharide chain lengths, with average lengths estimated at 40 or 400 residues. Models for rigid molecule tumbling, including two based on helical conformations proposed for the polysaccharide,(31) could not explain the NMR measurements. In general for these helices, the correlation times for their overall tumbling that best account for the NMR data correspond to polysaccharide chains between 9 and 18 residues in length, far short of the average lengths estimated for either solution. The effects of internal motions incorporated into these helices was modeled with an effective correlation time representing helix tumbling as well as internal motion. This modeling demonstrated that even with extreme amounts of internal motion, "flexible helices" of 25 residues or more still could not produce the NMR measurements. All data are consistent with internal and segmental motions dominating the nuclear magnetic relaxation of the polysaccharide and not molecular tumbling. Statistical distributions of correlation times have been found specifically for the pyranose rings, linkage groups, and methoxy groups that can account for the measured relaxation times and NOE enhancements. The distributions suggest that considerable flexibility attends the polysaccharide in solution, and the ranges of motional frequencies for the linkage groups and pyranose rings are comparable. We conclude that the Group B meningococcal polysaccharide is a random coil chain in solution, and therefore, does not have antigenic epitopes dependent upon a rigid, ordered conformation.Keywords
This publication has 31 references indexed in Scilit:
- Picosecond dynamics of simple monosaccharides as probed by NMR and molecular dynamics simulationsJournal of the American Chemical Society, 1993
- Immunogenicity in adult males of a Neisseria meningitidis group B vaccine composed of polysaccharide complexed with outer membrane proteinsVaccine, 1991
- Carbohydrate ligands of the LEC cell adhesion moleculesCell, 1990
- Requirement for sialic acid on neutrophils in a GMP-140 (PADGEM) mediated adhesive interaction with activated plateletsBiochemical and Biophysical Research Communications, 1990
- Biosynthesis of a specifically deuterated diunsaturated fatty acid (18:2.DELTA.6,9) for deuterium NMR membrane studiesBiochemistry, 1987
- CHARMM: A program for macromolecular energy, minimization, and dynamics calculationsJournal of Computational Chemistry, 1983
- Nuclear magnetic relaxation of synthetic polymers in dilute solutionProgress in Nuclear Magnetic Resonance Spectroscopy, 1979
- Molecular dynamics and structure of the random coil and helical states of the collagen peptide, α1-CB2, as determined by 13C magnetic resonanceBiochemistry, 1975
- Distributions of Correlation Times and the Carbon-13 Nuclear Magnetic Resonance Spectra of PolymersMacromolecules, 1973
- Distributions of correlation times and their effect on the comparison of molecular motions derived from nuclear spin-lattice and dielectric relaxationTransactions of the Faraday Society, 1964