bioRxiv · 10.1101/2025.07.17.665365
A new protein-dependent riboswitch activates ribosomal frameshifting
Abstract
Programmed -1 ribosomal frameshifting (PRF) is a translational control mechanism used by RNA viruses to regulate the relative abundance of proteins encoded in different reading frames. Cardioviruses exhibit the highest known PRF efficiency, with ~85% of ribosomes shifting into the -1 frame. This unusual event requires an interaction between the viral 2A protein and a stimulatory element in the RNA genome, but the basis for protein-dependence is unclear. To address this, here we investigate structure and dynamics of the PRF signal in Theiler's murine encephalitis virus (TMEV). By combining X-ray crystallography, small angle X-ray scattering (SAXS) and single-molecule fluorescence resonance energy transfer (smFRET), we show that 2A binding switches the RNA from a stem-loop conformation into a pseudoknot, and we demonstrate that pseudoknot formation is essential for efficient PRF in vitro and in cells. Together, these findings illustrate how the cardiovirus PRF element behaves as a protein-dependent riboswitch, defining the molecular mechanism by which frameshifting is conditionally activated.
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Betts, J. K., Jeffries, C. M., Passchier, T. C., Kung, H. C. Y., Graham, S. P., Abdelhamid, M. A. S., Howard, J. A. L., Craggs, T. D., Graham, S. C., Brierley, I., Leake, M. C., Quinn, S. D., Hill, C. H.. 2025-07-18. A new protein-dependent riboswitch activates ribosomal frameshifting. https://doi.org/10.1101/2025.07.17.665365
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