4.4 Article

Conformational analysis of a dermatan sulfate-derived tetrasaccharide by NMR, molecular modeling, and residual dipolar couplings

Journal

CHEMBIOCHEM
Volume 9, Issue 2, Pages 240-252

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cbic.200700400

Keywords

conformation analysis; dermatan sulfate; glycosaminoglycans; molecular dynamics; residual dipolar coupling

Funding

  1. NHLBI NIH HHS [HL62244, R01 HL062244-05A1, R01 HL062244, R01 HL062244-07] Funding Source: Medline
  2. NIGMS NIH HHS [R01 GM038060-19, R01 GM038060, GM38060] Funding Source: Medline

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The solution conformation behavior of a dermatan-derived tetra-saccharide-Delta HexA-(1 -> 3)-GalNAc4S-beta-(1 -> 3) red-GalNAc4S (S is a sulfate group)-has been explored by means of NMR spectroscopy, especially by NOE-based conformational analysis. The tetrosaccharide was present as four species, two of which are chemically different in the anomeric orientation of the reducing 2-deoxy-2-acetamido-golactose (red-GalNAc) residue, while the other two are the result of different conformations of the iduronic acid (IdoA) unit. The two alpha-beta-interconverting anomers were present in a 0.6:1 ratio. Ring conformations have been defined by analysis of (3)J(H,H) Coupling constants and interresidual NOE contacts. Both 2-deoxy-2-acetamido-galactose (GalNAc) residues were found in the C-4(1) chair conformation, the unsaturated uronic acid (Delta-Hex A) adopts a strongly predominant half-chair H-1(2) conformation, while the IdoA residue exists either in the C-1(4) chair or in the S-2(0) skewed boat geometries, in a 4:1 ratio. There is a moderate flexibility of (D and W torsions as suggested by nuclear Overhouser effects (NOEs), molecular modeling (MM), and molecular dynamics (MD) studies. This was further investigated by residual dipolar couplings (RDCs). One-bond C-H RDCs (D-1(C,H)) and long-range H-H (D-3(H,H)) RDCs were measured for the tetra-sacchoride in a phage solution and interpreted in combination with restrained MD simulation. The RDC-derived data substantially confirmed the validity of the conformer distribution resulting from the NOE-derived simulations, but allowed an improved definition of the conformational behavior of the oligosaccharides in solution. In summary, the data show a moderate flexibility of the four tetrasaccharide species at the central glycosidic linkage. Differences in the shapes of species with the IdoA in skew and in chair conformations and in the distribution of the sulfate groups have also been highlighted.

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