Lanthanoid tagging via an unnatural amino acid for protein structure characterization

J Biomol NMR. 2017 Apr;67(4):273-282. doi: 10.1007/s10858-017-0106-9. Epub 2017 Apr 1.

Abstract

Lanthanoid pseudo-contact shift (PCS) provides long-range structural information between a paramagnetic tag and protein nuclei. However, for proteins with native cysteines, site-specific attachment may only utilize functional groups orthogonal to sulfhydryl chemistry. Here we report two lanthanoid probes, DTTA-C3-yne and DTTA-C4-yne, which can be conjugated to an unnatural amino acid pAzF in the target protein via azide-alkyne cycloaddition. Demonstrated with ubiquitin and cysteine-containing enzyme EIIB, we show that large PCSs of distinct profiles can be generated for each tag/lanthanoid combination. The DTTA-based lanthanoid tags are associated with large magnetic susceptibility tensors owing to the rigidity of the tags. In particular, introduction of the DTTA-C3 tag affords intermolecular PCSs and enables structural characterization of a transient protein complex between ubiquitin and a UBA domain. Together, we have expanded the repertoire of paramagnetic tags and the applicability of paramagnetic NMR.

Keywords: Azide-alkyne cycloaddition; Protein structure; Pseudo-contact shift; Transient protein complex; Unnatural amino acid.

MeSH terms

  • Alkynes / chemistry
  • Amino Acids / chemistry*
  • Animals
  • Azides / chemistry
  • Bacterial Proteins
  • Cycloaddition Reaction / methods
  • Humans
  • Lanthanoid Series Elements / chemistry*
  • Nuclear Magnetic Resonance, Biomolecular / methods*
  • Pentetic Acid / analogs & derivatives
  • Phosphoenolpyruvate Sugar Phosphotransferase System / chemistry
  • Proteins / chemistry*
  • Spin Labels
  • Ubiquitin / chemistry

Substances

  • Alkynes
  • Amino Acids
  • Azides
  • Bacterial Proteins
  • Lanthanoid Series Elements
  • Proteins
  • Spin Labels
  • Ubiquitin
  • diethylenetriaminetetraacetic acid
  • Pentetic Acid
  • Phosphoenolpyruvate Sugar Phosphotransferase System