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The Ninth Datta Lecture. Molecular biology of transmissible spongiform encephalopathies

C Weissmann1

  • 1Institut für Molekularbiologie I, Universität Zürich, Switzerland. weissma@molbiol1.unizh.ch

FEBS Letters
|June 24, 1996
PubMed

Insights

Mice lacking the prion protein gene (Prnp) showed resistance to prion diseases like scrapie. Even mice with reduced prion protein levels exhibited enhanced resistance, supporting the protein-only hypothesis for prion propagation.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Genetics

Background:

  • Prions are infectious agents causing spongiform encephalopathies.
  • The 'protein only' hypothesis suggests prions convert normal host proteins (PrPC) into abnormal forms (PrPSc).
  • This implies animals lacking PrPC should be resistant to prion diseases.

Purpose of the Study:

  • To investigate the role of the prion protein (PrP) in susceptibility to prion diseases.
  • To test the 'protein only' hypothesis by generating and challenging PrP knockout mice.

Main Methods:

  • Generation of homozygous Prnp knockout (Prnp(olo)) mice and heterozygous Prnp (Prnp(ol+)) mice.
  • Inoculation of these mice with prions (scrapie agent).
  • Introduction of murine and hamster PrP transgenes into Prnp(olo) mice for complementation studies.

Main Results:

  • Prnp(olo) mice were completely resistant to scrapie, showing no prion propagation.
  • Wild-type mice succumbed to scrapie within 6 months.
  • Prnp(ol+) mice displayed enhanced resistance, despite early PrPSc presence.
  • Complementation studies demonstrated PrP-dependent susceptibility to specific prion strains.

Conclusions:

  • The prion protein (PrP) is essential for susceptibility to prion diseases.
  • These findings strongly support the 'protein only' hypothesis.
  • Reverse genetics approaches using PrP transgenes are effective for studying prion diseases.

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