Biomolecular complex viewed by dynamic nuclear polarization solid-state NMR spectroscopy

Author:

Chakraborty Arnab1,Deligey Fabien1,Quach Jenny1,Mentink-Vigier Frederic2,Wang Ping3,Wang Tuo1ORCID

Affiliation:

1. Department of Chemistry, Louisiana State University, Baton Rouge, LA 70803, U.S.A

2. National High Magnetic Field Laboratory, Tallahassee, FL 32310, U.S.A

3. Department of Microbiology, Immunology, and Parasitology, Louisiana State University Health Sciences Center, New Orleans, LA 70112, U.S.A

Abstract

Solid-state nuclear magnetic resonance (ssNMR) is an indispensable tool for elucidating the structure and dynamics of insoluble and non-crystalline biomolecules. The recent advances in the sensitivity-enhancing technique magic-angle spinning dynamic nuclear polarization (MAS-DNP) have substantially expanded the territory of ssNMR investigations and enabled the detection of polymer interfaces in a cellular environment. This article highlights the emerging MAS-DNP approaches and their applications to the analysis of biomolecular composites and intact cells to determine the folding pathway and ligand binding of proteins, the structural polymorphism of low-populated biopolymers, as well as the physical interactions between carbohydrates, proteins, and lignin. These structural features provide an atomic-level understanding of many cellular processes, promoting the development of better biomaterials and inhibitors. It is anticipated that the capabilities of MAS-DNP in biomolecular and biomaterial research will be further enlarged by the rapid development of instrumentation and methodology.

Publisher

Portland Press Ltd.

Subject

Biochemistry

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