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RNA structures and dynamics with Å resolution revealed by x-ray free-electron lasers

  • Kara A. Zielinski
  • , Shuo Sui
  • , Suzette A. Pabit
  • , Daniel A. Rivera
  • , Tong Wang
  • , Qingyue Hu
  • , Maithri M. Kashipathy
  • , Stella Lisova
  • , Chris B. Schaffer
  • , Valerio Mariani
  • , Mark S. Hunter
  • , Christopher Kupitz
  • , Frank R. Moss
  • , Frédéric P. Poitevin
  • , Thomas D. Grant
  • , Lois Pollack
  • Cornell University
  • SLAC National Accelerator Laboratory

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

RNA macromolecules, like proteins, fold to assume shapes that are intimately connected to their broadly recognized biological functions; however, because of their high charge and dynamic nature, RNA structures are far more challenging to determine.We introduce an approach that exploits the high brilliance of x-ray free-electron laser sources to reveal the formation and ready identification of angstrom-scale features in structured and unstructured RNAs. Previously unrecognized structural signatures of RNA secondary and tertiary structures are identified through wide-angle solution scattering experiments. With millisecond time resolution, we observe an RNA fold from a dynamically varying single strand through a base-paired intermediate to assume a triplehelix conformation. While the backbone orchestrates the folding, the final structure is locked in by base stacking. This method may help to rapidly characterize and identify structural elements in nucleic acids in both equilibrium and time-resolved experiments.

Original languageEnglish
Article numbereadj3509
JournalScience Advances
Volume9
Issue number39
DOIs
StatePublished - 2023

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