Mixing and Matching Detergents for Membrane Protein NMR Structure Determination
- 8 May 2009
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 131 (21) , 7320-7326
- https://doi.org/10.1021/ja808776j
Abstract
One major obstacle to membrane protein structure determination is the selection of a detergent micelle that mimics the native lipid bilayer. Currently, detergents are selected by exhaustive screening because the effects of protein−detergent interactions on protein structure are poorly understood. In this study, the structure and dynamics of an integral membrane protein in different detergents is investigated by nuclear magnetic resonance (NMR) and electron paramagnetic resonance (EPR) spectroscopy and small-angle X-ray scattering (SAXS). The results suggest that matching of the micelle dimensions to the protein’s hydrophobic surface avoids exchange processes that reduce the completeness of the NMR observations. Based on these dimensions, several mixed micelles were designed that improved the completeness of NMR observations. These findings provide a basis for the rational design of mixed micelles that may advance membrane protein structure determination by NMR.Keywords
This publication has 32 references indexed in Scilit:
- Size and Shape of Detergent Micelles Determined by Small-Angle X-ray ScatteringThe Journal of Physical Chemistry B, 2007
- Solution NMR of membrane proteins in bilayer mimics: Small is beautiful, but sometimes bigger is betterPublished by Elsevier ,2007
- Analysis of small-angle X-ray scattering data of protein–detergent complexes by singular value decompositionJournal of Applied Crystallography, 2007
- Solution NMR of membrane proteins: practice and challengesMagnetic Resonance in Chemistry, 2006
- Expression, purification, and characterization of Thermotoga maritima membrane proteins for structure determinationProtein Science, 2006
- Solving the membrane protein folding problemNature, 2005
- Mapping Backbone Dynamics in Solution with Site-Directed Spin Labeling: GCN4−58 bZip Free and Bound to DNABiochemistry, 2004
- Detergents modulate dimerization, but not helicity, of the glycophorin A transmembrane domainJournal of Molecular Biology, 1999
- Structure of the KcsA Potassium Channel from Streptomyces lividans: A Site-Directed Spin Labeling Study of the Second Transmembrane SegmentBiochemistry, 1999
- Transmembrane Protein Structure: Spin Labeling of Bacteriorhodopsin MutantsScience, 1990