DNP-assisted solid-state NMR enables detection of proteins at nanomolar concentrations in fully protonated cellular milieu.

Whitney N Costello, Yiling Xiao, Frederic Mentink-Vigier, Jaka Kragelj, Kendra K Frederick

Journal: Journal of biomolecular NMR 2024;78(2):95-108

PMID: 38520488

Abstract

With the sensitivity enhancements conferred by dynamic nuclear polarization (DNP), magic angle spinning (MAS) solid state NMR spectroscopy experiments can attain the necessary sensitivity to detect very low concentrations of proteins. This potentially enables structural investigations of proteins at their endogenous levels in their biological contexts where their native stoichiometries with potential interactors is maintained. Yet, even with DNP, experiments are still sensitivity limited. Moreover, when an isotopically-enriched target protein is present at physiological levels, which typically range from low micromolar to nanomolar concentrations, the isotope content from the natural abundance isotopes in the cellular milieu can outnumber the isotope content of the target protein. Using isotopically enriched yeast prion protein, Sup35NM, diluted into natural abundance yeast lysates, we optimized sample composition. We found that modest cryoprotectant concentrations and fully protonated environments support efficient DNP. We experimentally validated theoretical calculations of the limit of specificity for an isotopically enriched protein in natural abundance cellular milieu. We establish that, using pulse sequences that are selective for adjacent NMR-active nuclei, proteins can be specifically detected in cellular milieu at concentrations in the hundreds of nanomolar. Finally, we find that maintaining native stoichiometries of the protein of interest to the components of the cellular environment may be important for proteins that make specific interactions with cellular constituents.

© 2024. The Author(s), under exclusive licence to Springer Nature B.V.

Address: Department of Biophysics, UT Southwestern Medical Center, Dallas, TX, 75390-8816, USA.; National High Magnetic Field Lab, Florida State University, Tallahassee, FL, USA.; Department of Biophysics, UT Southwestern Medical Center, Dallas, TX, 75390-8816, USA.; Slovenian NMR centre, National Institute of Chemistry, Hajdrihova 19, 1000, Ljubljana, Slovenia.; Department of Biophysics, UT Southwestern Medical Center, Dallas, TX, 75390-8816, USA. [email protected].; Center for Alzheimer's and Neurodegenerative Disease, UT Southwestern Medical Center, Dallas, TX, 75390, USA. [email protected].

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