Functional conservation despite structural divergence in ligand-responsive RNA switches

Proc Natl Acad Sci U S A. 2014 Nov 11;111(45):15952-7. doi: 10.1073/pnas.1414678111. Epub 2014 Oct 27.

Abstract

An internal ribosome entry site (IRES) initiates protein synthesis in RNA viruses, including the hepatitis C virus (HCV). We have discovered ligand-responsive conformational switches in viral IRES elements. Modular RNA motifs of greatly distinct sequence and local secondary structure have been found to serve as functionally conserved switches involved in viral IRES-driven translation and may be captured by identical cognate ligands. The RNA motifs described here constitute a new paradigm for ligand-captured switches that differ from metabolite-sensing riboswitches with regard to their small size, as well as the intrinsic stability and structural definition of the constitutive conformational states. These viral RNA modules represent the simplest form of ligand-responsive mechanical switches in nucleic acids.

Keywords: IRES elements; RNA viruses; hepatitis C virus; translation regulation.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Cell-Free System / chemistry
  • Cell-Free System / metabolism
  • Hepacivirus / chemistry*
  • Hepacivirus / genetics
  • Hepacivirus / metabolism
  • Nucleic Acid Conformation*
  • Protein Biosynthesis / physiology
  • RNA, Viral / chemistry*
  • RNA, Viral / genetics
  • RNA, Viral / metabolism
  • Regulatory Sequences, Ribonucleic Acid*
  • Viral Proteins / biosynthesis

Substances

  • RNA, Viral
  • Regulatory Sequences, Ribonucleic Acid
  • Viral Proteins

Associated data

  • PDB/4P97
  • PDB/4PHY