Litcius/Paper detail

Charting the solid‐state NMR signals of polysaccharides: A database‐driven roadmap

Wancheng Zhao, Debkumar Debnath, Isha Gautam, Liyanage D. Fernando, Tuo Wang

2023Magnetic Resonance in Chemistry19 citationsDOIOpen Access PDF

Abstract

Solid-state nuclear magnetic resonance (ssNMR) measurements of intact cell walls and cellular samples often generate spectra that are difficult to interpret due to the presence of many coexisting glycans and the structural polymorphism observed in native conditions. To overcome this analytical challenge, we present a statistical approach for analyzing carbohydrate signals using high-resolution ssNMR data indexed in a carbohydrate database. We generate simulated spectra to demonstrate the chemical shift dispersion and compare this with experimental data to facilitate the identification of important fungal and plant polysaccharides, such as chitin and glucans in fungi and cellulose, hemicellulose, and pectic polymers in plants. We also demonstrate that chemically distinct carbohydrates from different organisms may produce almost identical signals, highlighting the need for high-resolution spectra and validation of resonance assignments. Our study provides a means to differentiate the characteristic signals of major carbohydrates and allows us to summarize currently undetected polysaccharides in plants and fungi, which may inspire future investigations.

Topics & Concepts

ChemistrySolid-state nuclear magnetic resonanceSolid-stateNuclear magnetic resonancePhysical chemistryPhysicsAdvanced NMR Techniques and ApplicationsPolysaccharides and Plant Cell WallsAdvanced Cellulose Research Studies
Charting the solid‐state NMR signals of polysaccharides: A database‐driven roadmap | Litcius