Login / Signup

Selective Protein Hyperpolarization in Cell Lysates Using Targeted Dynamic Nuclear Polarization.

Thibault ViennetAldino ViegasArne KuepperSabine ArensVladimir GelevOgnyan PetrovTom N GrossmannHenrike HeiseManuel Etzkorn
Published in: Angewandte Chemie (International ed. in English) (2016)
Nuclear magnetic resonance (NMR) spectroscopy has the intrinsic capabilities to investigate proteins in native environments. In general, however, NMR relies on non-natural protein purity and concentration to increase the desired signal over the background. We here report on the efficient and specific hyperpolarization of low amounts of a target protein in a large isotope-labeled background by combining dynamic nuclear polarization (DNP) and the selectivity of protein interactions. Using a biradical-labeled ligand, we were able to direct the hyperpolarization to the protein of interest, maintaining comparable signal enhancement with about 400-fold less radicals than conventionally used. We could selectively filter out our target protein directly from crude cell lysate obtained from only 8 mL of fully isotope-enriched cell culture. Our approach offers effective means to study proteins with atomic resolution in increasingly native concentrations and environments.
Keyphrases
  • magnetic resonance
  • protein protein
  • amino acid
  • binding protein
  • stem cells
  • computed tomography
  • magnetic resonance imaging
  • high resolution
  • small molecule
  • cancer therapy
  • mass spectrometry
  • drug delivery
  • pet imaging