Reversible symptoms and clearance of mutant prion protein in an inducible model of a genetic prion disease in Drosophila melanogaster

Neurobiol Dis. 2014 Jul:67:71-8. doi: 10.1016/j.nbd.2014.03.013. Epub 2014 Mar 28.

Abstract

Prion diseases are progressive disorders that affect the central nervous system leading to memory loss, personality changes, ataxia and neurodegeneration. In humans, these disorders include Creutzfeldt-Jakob disease, kuru and Gerstmann-Straüssler-Scheinker (GSS) syndrome, the latter being a dominantly inherited prion disease associated with missense mutations in the gene that codes for the prion protein. The exact mechanism by which mutant prion proteins affect the central nervous system and cause neurological disease is not well understood. We have generated an inducible model of GSS disease in Drosophila melanogaster by temporally expressing a misfolded form of the murine prion protein in cholinergic neurons. Flies accumulating this mutant protein develop motor abnormalities which are associated with electrophysiological defects in cholinergic neurons. We find that, upon blocking the expression of the mutant protein, both behavioral and electrophysiological defects can be reversed. This represents the first case of reversibility reported in a model of genetic prion disease. Additionally, we observe that endogenous mechanisms exist within Drosophila that are capable of clearing the accumulated prion protein.

Keywords: Clearance of misfolded prion protein; Inducible model of GSS; P101L; Reversibility.

Publication types

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

MeSH terms

  • Animals
  • Disease Models, Animal
  • Drosophila melanogaster / genetics
  • Gerstmann-Straussler-Scheinker Disease / genetics*
  • Gerstmann-Straussler-Scheinker Disease / metabolism
  • Gerstmann-Straussler-Scheinker Disease / physiopathology
  • Models, Genetic
  • Motor Activity / genetics
  • Mutation*
  • Prions / genetics*
  • Prions / metabolism

Substances

  • Prions