Conversion of the cellular prion protein (PrPC) into its altered conformation, PrPSc, is believed to be the major cause of prion diseases. Although PrP is the only identified agent for these diseases, there is increasing evidence that other molecules can modulate the conversion.Wehave found that interaction of PrP with double-stranded DNA leads to a protein with higher β-sheet content and characteristics similar to those of PrP Sc. RNA molecules can also interact with PrP and potentially modulate PrPC to PrPSc conversion or even bind differentially to both PrP isoforms. Here, we investigated the interaction of recombinant murine PrP with synthetic RNA sequences and with total RNA extracted from cultured neuroblastoma cells (N2aRNA). We found that PrP interacts with N2aRNA with nanomolar affinity, aggregates upon this interaction, and forms species partially resistant to proteolysis. RNA does not bind to N-terminal deletion mutants of PrP, indicating that the N-terminal region is important for this process. Cell viability assays showed that only the N2aRNA extract induces PrP-RNA aggregates that can alter the homeostasis of cultured cells. Small RNAs bound to PrP give rise to nontoxic small oligomers. Nuclear magnetic resonance measurements of the PrP-RNA complex revealed structural changes in PrP, but most of its native fold is maintained. These results indicate that there is selectivity in the species generated by interaction with different molecules of RNA. The catalytic effect of RNA on the PrPC → PrPSc conversion depends on theRNAsequence, and small RNA molecules may exert a protective effect. © 2008 by The American Society for Biochemistry and Molecular Biology, Inc.
CITATION STYLE
Gomes, M. P. B., Millen, T. A., Ferreira, P. S., Cunha E Silva, N. L., Vieira, T. C. R. G., Almeida, M. S., … Cordeiro, Y. (2008). Prion protein complexed to N2a cellular RNAs through its N-terminal domain forms aggregates and is toxic to murine neuroblastoma cells. Journal of Biological Chemistry, 283(28), 19616–19625. https://doi.org/10.1074/jbc.M802102200
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