Fluorine-19 NMR of integral membrane proteins illustrated with studies of GPCRs

•Renewed interest in 19F NMR for structural biology of complex molecular systems.•Advances in biochemistry and NMR techniques enable 19F NMR studies of new classes of membrane proteins.•19F NMR of GPCRs complements crystal structures with data on protein dynamics in long-range signal transfer. Fluor...

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Published inCurrent opinion in structural biology Vol. 23; no. 5; pp. 740 - 747
Main Authors Didenko, Tatiana, Liu, Jeffrey J, Horst, Reto, Stevens, Raymond C, Wüthrich, Kurt
Format Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.10.2013
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Abstract •Renewed interest in 19F NMR for structural biology of complex molecular systems.•Advances in biochemistry and NMR techniques enable 19F NMR studies of new classes of membrane proteins.•19F NMR of GPCRs complements crystal structures with data on protein dynamics in long-range signal transfer. Fluorine-19 is a spin-½ NMR isotope with high sensitivity and large chemical shift dispersion, which makes it attractive for high resolution NMR spectroscopy in solution. For studies of membrane proteins it is further of interest that 19F is rarely found in biological materials, which enables observation of extrinsic 19F labels with minimal interference from background signals. Today, after a period with rather limited use of 19F NMR in structural biology, we witness renewed interest in this technology for studies of complex supramolecular systems. Here we report on recent 19F NMR studies with the G protein-coupled receptor family of membrane proteins.
AbstractList Fluorine-19 is a spin-½ NMR isotope with high sensitivity and large chemical shift dispersion, which makes it attractive for high resolution NMR spectroscopy in solution. For studies of membrane proteins it is further of interest that 19 F is rarely found in biological materials, which enables observation of extrinsic 19 F labels with minimal interference from background signals. Today, after a period with rather limited use of 19 F-NMR in structural biology, we witness renewed interest in this technology for studies of complex supramolecular systems. Here we report on recent 19 F-NMR studies with the G-protein-coupled receptor family of membrane proteins.
Fluorine-19 is a spin-½ NMR isotope with high sensitivity and large chemical shift dispersion, which makes it attractive for high resolution NMR spectroscopy in solution. For studies of membrane proteins it is further of interest that (19)F is rarely found in biological materials, which enables observation of extrinsic (19)F labels with minimal interference from background signals. Today, after a period with rather limited use of (19)F NMR in structural biology, we witness renewed interest in this technology for studies of complex supramolecular systems. Here we report on recent (19)F NMR studies with the G protein-coupled receptor family of membrane proteins.
•Renewed interest in 19F NMR for structural biology of complex molecular systems.•Advances in biochemistry and NMR techniques enable 19F NMR studies of new classes of membrane proteins.•19F NMR of GPCRs complements crystal structures with data on protein dynamics in long-range signal transfer. Fluorine-19 is a spin-½ NMR isotope with high sensitivity and large chemical shift dispersion, which makes it attractive for high resolution NMR spectroscopy in solution. For studies of membrane proteins it is further of interest that 19F is rarely found in biological materials, which enables observation of extrinsic 19F labels with minimal interference from background signals. Today, after a period with rather limited use of 19F NMR in structural biology, we witness renewed interest in this technology for studies of complex supramolecular systems. Here we report on recent 19F NMR studies with the G protein-coupled receptor family of membrane proteins.
Author Liu, Jeffrey J
Didenko, Tatiana
Horst, Reto
Stevens, Raymond C
Wüthrich, Kurt
AuthorAffiliation 1 Department of Integrative Structural and Computational Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA
2 Skaggs Institute of Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA
AuthorAffiliation_xml – name: 2 Skaggs Institute of Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA
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Snippet •Renewed interest in 19F NMR for structural biology of complex molecular systems.•Advances in biochemistry and NMR techniques enable 19F NMR studies of new...
Fluorine-19 is a spin-½ NMR isotope with high sensitivity and large chemical shift dispersion, which makes it attractive for high resolution NMR spectroscopy...
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SubjectTerms Fluorine Radioisotopes
Membrane Proteins - chemistry
Membrane Proteins - metabolism
Nuclear Magnetic Resonance, Biomolecular - methods
Receptors, G-Protein-Coupled - chemistry
Receptors, G-Protein-Coupled - metabolism
Title Fluorine-19 NMR of integral membrane proteins illustrated with studies of GPCRs
URI https://dx.doi.org/10.1016/j.sbi.2013.07.011
https://www.ncbi.nlm.nih.gov/pubmed/23932201
https://search.proquest.com/docview/1443997294
https://pubmed.ncbi.nlm.nih.gov/PMC3805696
Volume 23
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