| Literature DB >> 30225969 |
Mingzhang Wang1,2, Manman Lu1,2,3, Matthew P Fritz1,2, Caitlin M Quinn1, In-Ja L Byeon2,3, Chang-Hyeock Byeon2,3, Jochem Struppe4, Werner Maas4, Angela M Gronenborn2,3, Tatyana Polenova1,2.
Abstract
19 F NMR spectroscopy is an attractive and growing area of research with broad applications in biochemistry, chemical biology, medicinal chemistry, and materials science. We have explored fast magic angle spinning (MAS) 19 F solid-state NMR spectroscopy in assemblies of HIV-1 capsid protein. Tryptophan residues with fluorine substitution at the 5-position of the indole ring were used as the reporters. The 19 F chemical shifts for the five tryptophan residues are distinct, reflecting differences in their local environment. Spin-diffusion and radio-frequency-driven-recoupling experiments were performed at MAS frequencies of 35 kHz and 40-60 kHz, respectively. Fast MAS frequencies of 40-60 kHz are essential for consistently establishing 19 F-19 F correlations, yielding interatomic distances of the order of 20 Å. Our results demonstrate the potential of fast MAS 19 F NMR spectroscopy for structural analysis in large biological assemblies.Entities:
Keywords: 19F NMR spectroscopy; capsids; magic angle spinning; protein assemblies; protein structures
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Year: 2018 PMID: 30225969 PMCID: PMC6279522 DOI: 10.1002/anie.201809060
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336