Ligand-induced conformational capture of a synthetic tetracycline riboswitch revealed by pulse EPR

RNA. 2011 Jan;17(1):182-8. doi: 10.1261/rna.2222811. Epub 2010 Nov 19.

Abstract

RNA aptamers are in vitro-selected binding domains that recognize their respective ligand with high affinity and specificity. They are characterized by complex three-dimensional conformations providing preformed binding pockets that undergo conformational changes upon ligand binding. Small molecule-binding aptamers have been exploited as synthetic riboswitches for conditional gene expression in various organisms. In the present study, double electron-electron resonance (DEER) spectroscopy combined with site-directed spin labeling was used to elucidate the conformational transition of a tetracycline aptamer upon ligand binding. Different sites were selected for post-synthetic introduction of either the (1-oxyl-2,2,5,5-tetramethylpyrroline-3-methyl) methanethiosulfonate by reaction with a 4-thiouridine modified RNA or of 4-isocyanato-2,6-tetramethylpiperidyl-N-oxid spin label by reaction with 2'-aminouridine modified RNA. The results of the DEER experiments indicate the presence of a thermodynamic equilibrium between two aptamer conformations in the free state and capture of one conformation upon tetracycline binding.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aptamers, Nucleotide / genetics*
  • Electron Spin Resonance Spectroscopy*
  • Ligands
  • Models, Molecular
  • Nucleic Acid Conformation / drug effects*
  • Protein Synthesis Inhibitors / pharmacology*
  • Riboswitch / genetics*
  • Spin Labels
  • Tetracycline / pharmacology*
  • Thermodynamics

Substances

  • Aptamers, Nucleotide
  • Ligands
  • Protein Synthesis Inhibitors
  • Riboswitch
  • Spin Labels
  • Tetracycline