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_181 Xylan Xylp Polysaccharide plant Arabidopsis thaliana b-D-Xylp Xylan SNFG Xylan C1: 101.0, C2: 69.5, C3: 72.9, C4: 82.2, C5: 64.3 850 298.0 None TMS Whole cell Ray Dupree et al., Probing the molecular architecture of Arabidopsis thaliana secondary cell walls using two- and three-dimensional (13)C solid state nuclear magnetic resonance spectroscopy, Biochemistry, 2015
ccmrd_182 Xylan Xylp Polysaccharide plant Arabidopsis thaliana b-D-Xylp Xylan SNFG Xylan C4: 81.7 850 298.0 None TMS Whole cell Ray Dupree et al., Probing the molecular architecture of Arabidopsis thaliana secondary cell walls using two- and three-dimensional (13)C solid state nuclear magnetic resonance spectroscopy, Biochemistry, 2015
ccmrd_183 Xylan Xylp Polysaccharide plant Arabidopsis thaliana b-D-Xylp Xylan SNFG Xylan C4: 83.5 850 298.0 None TMS Whole cell Ray Dupree et al., Probing the molecular architecture of Arabidopsis thaliana secondary cell walls using two- and three-dimensional (13)C solid state nuclear magnetic resonance spectroscopy, Biochemistry, 2015
ccmrd_184 Homogalacturonan GalpA Polysaccharide plant Arabidopsis thaliana a-D-GalpA Homogalacturonan SNFG Homogalacturonan C5: 71.4, C6: 171.3 850 298.0 None TMS Whole cell Ray Dupree et al., Probing the molecular architecture of Arabidopsis thaliana secondary cell walls using two- and three-dimensional (13)C solid state nuclear magnetic resonance spectroscopy, Biochemistry, 2015
ccmrd_185 Homogalacturonan GalpA Polysaccharide plant Arabidopsis thaliana a-?-GalpA Homogalacturonan SNFG Homogalacturonan C5: 71.7, C6: 172.1 850 298.0 None TMS Whole cell Ray Dupree et al., Probing the molecular architecture of Arabidopsis thaliana secondary cell walls using two- and three-dimensional (13)C solid state nuclear magnetic resonance spectroscopy, Biochemistry, 2015
ccmrd_186 Homogalacturonan GalpA Polysaccharide plant Arabidopsis thaliana a-?-GalpA Homogalacturonan SNFG Homogalacturonan C5: 72.8, C6: 176.1 850 298.0 None TMS Whole cell Ray Dupree et al., Probing the molecular architecture of Arabidopsis thaliana secondary cell walls using two- and three-dimensional (13)C solid state nuclear magnetic resonance spectroscopy, Biochemistry, 2015
ccmrd_187 Homogalacturonan GalpA Polysaccharide plant Arabidopsis thaliana a-?-GalpA Homogalacturonan SNFG Homogalacturonan C6: 173.2 850 298.0 None TMS Whole cell Ray Dupree et al., Probing the molecular architecture of Arabidopsis thaliana secondary cell walls using two- and three-dimensional (13)C solid state nuclear magnetic resonance spectroscopy, Biochemistry, 2015
ccmrd_188 Cellulose Glcp Polysaccharide plant Arabidopsis thaliana b-D-Glcp Cellulose SNFG Cellulose C1: 105.1, C2: 72.8, C3: 75.7, C4: 88.9, C5: 72.7, C6: 65.1 850 298.0 None TMS Whole cell Thomas J. Simmons et al., Folding of xylan onto cellulose fibrils in plant cell walls revealed by solid-state NMR, Nature Communications, 2016
ccmrd_189 Cellulose Glcp Polysaccharide plant Arabidopsis thaliana b-D-Glcp Cellulose SNFG Cellulose C1: 105.1, C2: 72.8, C3: 75.7, C4: 84.7, C5: 75.7, C6: 62.6 850 298.0 None TMS Whole cell Thomas J. Simmons et al., Folding of xylan onto cellulose fibrils in plant cell walls revealed by solid-state NMR, Nature Communications, 2016
ccmrd_190 Cellulose Glcp Polysaccharide plant Arabidopsis thaliana b-D-Glcp Cellulose SNFG Cellulose C1: 105.1, C2: 72.8, C3: 75.7, C4: 83.8, C5: 75.7, C6: 61.7 850 298.0 None TMS Whole cell Thomas J. Simmons et al., Folding of xylan onto cellulose fibrils in plant cell walls revealed by solid-state NMR, Nature Communications, 2016