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Comprehensive evaluation of solution nuclear magnetic resonance spectroscopy sample preparation for helical integral membrane proteins. | LitMetric

AI Article Synopsis

  • High-quality sample preparation is essential for studying helical integral membrane proteins using solution NMR spectroscopy, as it ensures the production of pure and homogeneous samples.* -
  • The study presents two effective methods for sample preparation, which include screening for detergents and optimal conditions, allowing for efficient production of samples suitable for NMR analysis.* -
  • Results from analyzing 18 different helical integral membrane proteins show that, with the right sample preparation, it is possible to achieve well-resolved NMR spectra, facilitating the structural characterization of these proteins.*

Article Abstract

The preparation of high quality samples is a critical challenge for the structural characterization of helical integral membrane proteins. Solving the structures of this diverse class of proteins by solution nuclear magnetic resonance spectroscopy (NMR) requires that well-resolved 2D 1H/15N chemical shift correlation spectra be obtained. Acquiring these spectra demands the production of samples with high levels of purity and excellent homogeneity throughout the sample. In addition, high yields of isotopically enriched protein and efficient purification protocols are required. We describe two robust sample preparation methods for preparing high quality, homogeneous samples of helical integral membrane proteins. These sample preparation protocols have been combined with screens for detergents and sample conditions leading to the efficient production of samples suitable for solution NMR spectroscopy. We have examined 18 helical integral membrane proteins, ranging in size from approximately 9 kDa to 29 kDa with 1-4 transmembrane helices, originating from a number of bacterial and viral genomes. 2D 1H/15N chemical shift correlation spectra acquired for each protein demonstrate well-resolved resonances, and >90% detection of the predicted resonances. These results indicate that with proper sample preparation, high quality solution NMR spectra of helical integral membrane proteins can be obtained greatly enhancing the probability for structural characterization of these important proteins.

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Source
http://dx.doi.org/10.1007/s10969-006-9009-9DOI Listing

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