Complex Carbohydrate Magnetic Resonance Database (CCMRD)

Carbohydrates are crucial for various life activities in living organisms. The Complex Carbohydrates Magnetic Resonance Database (CCMRD), a solid-state NMR database for complex carbohydrates developed at Michigan State University. The Solid-state NMR spectroscopy reveals the molecular structure and dynamics of insoluble complex carbohydrates.

Database ID Trival Name Linear Code Compound Class Taxonomy Domain Species Residue SNFG Chemical Structure Chemical Shifts (ppm) Spectrometer (MHz) Temperature (K) pH NMR Reference Compound Sample Treatment Reference
ccmrd_648 Galacturonic acid GalpA Polysaccharide plant Arabidopsis thaliana ?-?-GalpA Galacturonic acid SNFG Galacturonic acid C1: 101.0, C2: 68.6, C3: 71.3, C6: 175.8, H1: 5.1, H2: 3.7 700/600/500 298.0 None TMS primary cell walls extraction Pyae Phyo and Mei Hong et al., Fast MAS 1H-13C correlation NMR for structural investigations of plant cell walls, Journal of Biomolecular NMR, 2019
ccmrd_649 Galacturonic acid GalpA Polysaccharide plant Arabidopsis thaliana ?-?-GalpA Galacturonic acid SNFG Galacturonic acid C1: 98.8, C2: 67.8, C3: 72.4, C4: 77.8, C5: 71.2, C6: 171.5, C7: 53.7, H1: 5.1, H2: 3.9, H3: 3.9, H7: 3.7 700/600/500 298.0 None TMS primary cell walls extraction Pyae Phyo and Mei Hong et al., Fast MAS 1H-13C correlation NMR for structural investigations of plant cell walls, Journal of Biomolecular NMR, 2019
ccmrd_650 Galacturonic acid GalpA Polysaccharide plant Arabidopsis thaliana ?-?-GalpA Galacturonic acid SNFG Galacturonic acid C1: 98.2, C2: 68.7, C3: 69.7, C4: 78.5, C5: 72.1, H1: 5.0, H2: 3.7, H3: 3.9, H4: 4.3 700/600/500 298.0 None TMS primary cell walls extraction Pyae Phyo and Mei Hong et al., Fast MAS 1H-13C correlation NMR for structural investigations of plant cell walls, Journal of Biomolecular NMR, 2019
ccmrd_651 Rhamnose units Rhap Polysaccharide plant Arabidopsis thaliana ?-?-Rhap Rhamnose units SNFG Rhamnose units C5: 69.7, C6: 17.3, H5: 3.9, H6: 1.3 700/600/500 298.0 None TMS primary cell walls extraction Pyae Phyo and Mei Hong et al., Fast MAS 1H-13C correlation NMR for structural investigations of plant cell walls, Journal of Biomolecular NMR, 2019
ccmrd_652 Rhamnose units Rhap Polysaccharide plant Arabidopsis thaliana ?-?-Rhap Rhamnose units SNFG Rhamnose units C1: 101.2, C2: 79.8, C3: 71.0, C4: 72.6, C5: 68.1, C6: 16.0, H1: 5.1, H2: 4.3, H4: 3.6, H5: 4.0, H6: 1.2 700/600/500 298.0 None TMS primary cell walls extraction Pyae Phyo and Mei Hong et al., Fast MAS 1H-13C correlation NMR for structural investigations of plant cell walls, Journal of Biomolecular NMR, 2019
ccmrd_653 Rhamnose units Rhap Polysaccharide plant Arabidopsis thaliana ?-?-Rhap Rhamnose units SNFG Rhamnose units H1: 5.1, H2: 4.4, H4: 3.6, H5: 4.0, H6: 1.2 700/600/500 298.0 None TMS primary cell walls extraction Pyae Phyo and Mei Hong et al., Fast MAS 1H-13C correlation NMR for structural investigations of plant cell walls, Journal of Biomolecular NMR, 2019
ccmrd_654 Arabinan Araf Polysaccharide plant Spruce (Picea abies) ?-?-Araf Arabinan SNFG Arabinan C1: 107.8, C2: 81.8, C3: 77.2, C4: 84.6, C5: 61.8 600/400 298.0 None TMS whole cell Alex Kirui et al., Carbohydrate-aromatic interface and molecular architecture of lignocellulose, NATURE COMMUNICATIONS, 2022
ccmrd_655 Arabinan Araf Polysaccharide plant Spruce (Picea abies) ?-?-Araf Arabinan SNFG Arabinan C1: 107.8, C2: 80.1 600/400 298.0 None TMS whole cell Alex Kirui et al., Carbohydrate-aromatic interface and molecular architecture of lignocellulose, NATURE COMMUNICATIONS, 2022
ccmrd_656 Arabinan Araf Polysaccharide plant Spruce (Picea abies) ?-?-Araf Arabinan SNFG Arabinan C1: 109.7, C2: 81.8, C3: 77.4, C4: 82.9, C5: 67.6 600/400 298.0 None TMS whole cell Alex Kirui et al., Carbohydrate-aromatic interface and molecular architecture of lignocellulose, NATURE COMMUNICATIONS, 2022
ccmrd_657 Galactose units Galp Polysaccharide plant Spruce (Picea abies) ?-?-Galp Galactose units SNFG Galactose units C1: 104.9, C2: 72.3 600/400 298.0 None TMS whole cell Alex Kirui et al., Carbohydrate-aromatic interface and molecular architecture of lignocellulose, NATURE COMMUNICATIONS, 2022