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Solid-state NMR observation of chitin in whole cells by indirect 15N detection with NC, NCC, CNC and CNCC polarization transfers

2025/03/15 by Loic Delcourte, Mélanie Berbon, Marion Rodriguez +3 · 1 voice
Chemistry · Engineering · Materials Science · #Advanced NMR Techniques and Applications #Advancements in Battery Materials #Solid-state spectroscopy and crystallography

paper · doi:10.1016/j.ssnmr.2025.102002

openalex created_date 2025/03/15 · openalex publication_date 2025/03/15 · openalex updated_date 2026/07/27

Abstract

Chitin is the most important nitrogen-containing polysaccharide found on Earth. This polysaccharide is a polymer of an N-acetylglucosamine and it is a crucial structural component of fungal cell walls and crustaceans. Magic-angle spinning solid-state NMR is emerging as a powerful analytical approach to study polysaccharides in the context of intact cell walls and whole cells. The presence of an acetamido group in chitin is attractive for 15 N solid-state NMR. Here we investigate the use of various multi-step polarization transfer experiments incorporating indirect 15 N detection at moderate spinning frequency, adapted from pulse sequences commonly employed for residue resonance assignment in biosolid proteins. The 13 C, 15 N chitin spin topology slightly differs from amino acids, and we discussed the use of frequency-selective 15 N- 13 C cross-polarization transfers followed by broadband or frequency-selective homonuclear 13 C– 13 C transfers to detect chitin resonances. Demonstrated here for chitin found in the cell wall of the fungus Aspergillus fumigatus , the use of indirect 15 N detection through multi-step polarization transfers could be advantageous to investigate more complex nitrogen-containing polysaccharides found in whole cells and peptidoglycan samples. • Multi-step polarization transfers involving 15 N indirect detection are used to observe chitin signals in whole cells. • Spin topologies of chitin and amino acids are discussed in terms of 15 N indirect detection. • NC, NCC, CNC and CNCC polarization transfer experiments are presented to detect nitrogen-containing molecules. • Various polarization transfers are demonstrated on Aspergillus Fumigatus cells to detect chitin present in the cell wall.

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