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_576 | Glucan | Glcp | Polysaccharide | fungi | Aspergillus fumigatus | b-?-Glcp | C1: 103.3, C2: 74.2, C3: 88.3, C4: 70.1, C5: 77.0, C6: 61.2 | 800 | 298.0 | None | TMS | whole cell | Arnab Chakraborty et al., A Molecular Vision of Fungal Cell Wall Organization by Functional Genomics and Solid-State NMR, NATURE COMMUNICATIONS, 2021 | ||
ccmrd_577 | Glucan | Glcp | Polysaccharide | fungi | Aspergillus fumigatus | a-?-Glcp | C1: 101.0, C2: 71.9, C3: 84.6, C4: 69.5, C5: 71.7, C6: 60.5 | 800 | 298.0 | None | TMS | whole cell | Arnab Chakraborty et al., A Molecular Vision of Fungal Cell Wall Organization by Functional Genomics and Solid-State NMR, NATURE COMMUNICATIONS, 2021 | ||
ccmrd_578 | Chitin | GlcpNAc | Polysaccharide | fungi | Aspergillus fumigatus | b-?-GlcpNAc | C1: 103.6, C2: 55.5, C3: 72.9, C4: 83.0, C5: 75.7, C6: 60.9, C7: 174.8, C8: 22.6, N1: 123.6 | 800 | 298.0 | None | TMS | whole cell | Arnab Chakraborty et al., A Molecular Vision of Fungal Cell Wall Organization by Functional Genomics and Solid-State NMR, NATURE COMMUNICATIONS, 2021 | ||
ccmrd_581 | Galactosaminogalactan | GalpNACGalpNGalp | Polysaccharide | fungi | Aspergillus fumigatus | ?-?-GalpN | C1: 102.5, C2: 55.8, C3: 71.1, C4: 83.6 | 800 | 298.0 | None | TMS | whole cell | Arnab Chakraborty et al., A Molecular Vision of Fungal Cell Wall Organization by Functional Genomics and Solid-State NMR, NATURE COMMUNICATIONS, 2021 | ||
ccmrd_582 | Mannan ( Acetylated, never-dried) | Manp | Polysaccharide | plant | Pinus radiata | ?-?-Manp | C1: 100.8, C2: 71.9, C3: 75.9, C4: 80.4, C5: 75.8, C6: 61.5 | 700/600/500 | 298.0 | None | TMS | whole cell | Rosalie Cresswell et al., The importance of water in maintaining plant secondary cell wall nanostructure, Biomacromolecules, 2021 | ||
ccmrd_583 | Mannan ( Unacetylated, never-dried) | Manp | Polysaccharide | plant | Pinus radiata | ?-?-Manp | C1: 101.6, C2: 72.0, C4: 80.4, C5: 75.8, C6: 61.8 | 700/600/500 | 298.0 | None | TMS | whole cell | Rosalie Cresswell et al., The importance of water in maintaining plant secondary cell wall nanostructure, Biomacromolecules, 2021 | ||
ccmrd_584 | Mannan ( Solubilised, rehydrated) | Manp | Polysaccharide | plant | Pinus radiata | ?-?-Manp | C1: 100.4, C2: 72.2, C3: 74.3, C4: 77.5, C5: 72.1, C6: 61.3 | 700/600/500 | 298.0 | None | TMS | whole cell | Rosalie Cresswell et al., The importance of water in maintaining plant secondary cell wall nanostructure, Biomacromolecules, 2021 | ||
ccmrd_585 | Mannan ( Solubilised, rehydrated) | Manp | Polysaccharide | plant | Pinus radiata | ?-?-Manp | C1: 100.4, C2: 72.5, C3: 74.0, C4: 77.7, C5: 71.7, C6: 61.3 | 700/600/500 | 298.0 | None | TMS | whole cell | Rosalie Cresswell et al., The importance of water in maintaining plant secondary cell wall nanostructure, Biomacromolecules, 2021 | ||
ccmrd_586 | Arabinan_rehydrated | Araf | Polysaccharide | plant | Pinus radiata | ?-?-Araf | C1: 108.1, C2: 80.1, C3: 77.6, C4: 83.0, C5: 67.6 | 700/600/500 | 298.0 | None | TMS | whole cell | Rosalie Cresswell et al., The importance of water in maintaining plant secondary cell wall nanostructure, Biomacromolecules, 2021 | ||
ccmrd_587 | Arabinan_Terminal Arabinose | Araf | Polysaccharide | plant | Pinus radiata | ?-?-Araf | C1: 107.9, C2: 81.9, C3: 77.4, C4: 84.7, C5: 61.9 | 700/600/500 | 298.0 | None | TMS | whole cell | Rosalie Cresswell et al., The importance of water in maintaining plant secondary cell wall nanostructure, Biomacromolecules, 2021 |