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Updated: Jul 17, 2026

Protein Misfolding Cyclic Amplification of Prions
Published on: November 7, 2012
The reconstitution of mammalian prion infectivity de novo
1Medical Biotechnology Center, Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, Baltimore, MD, USA. Baskakov@umbi.umd.edu
Abstract:
The discovery of prion disease transmission in mammals, as well as a non-Mendelian type of inheritance in yeast, has led to the establishment of a new concept in biology, the prion hypothesis. The prion hypothesis postulates that an abnormal protein conformation propagates itself in an autocatalytic manner using the normal isoform of the same protein as a substrate and thereby acts either as a transmissible agent of disease (in mammals), or as a heritable determinant of phenotype (in yeast and fungus). While the prion biology of yeast and fungus supports this idea strongly, the direct proof of the prion hypothesis in mammals, specifically the reconstitution of the disease-associated isoform of the prion protein (PrP(Sc)) in vitro de novo from noninfectious prion protein, has been difficult to achieve despite many years of effort. The present review summarizes our current knowledge about the biochemical nature of the prion infectious agent and structure of PrP(Sc), describes potential strategies for generating prion infectivity de novo and provides some insight on why the reconstitution of infectivity has been difficult to achieve in vitro. Several hypotheses are proposed to explain the apparently low infectivity of the first generation of recently reported synthetic mammalian prions.
Insights
The prion hypothesis suggests abnormal proteins cause disease or heritable traits by self-propagation. Reconstituting mammalian prion infectivity in vitro remains challenging, hindering direct proof of this hypothesis.
Area of Science:
- Molecular Biology
- Neuroscience
- Genetics
Background:
- Prion diseases involve transmissible abnormal protein conformations.
- The prion hypothesis explains disease in mammals and heritable traits in yeast/fungi.
- Yeast/fungal prion models strongly support the hypothesis, but mammalian proof is lacking.
Purpose of the Study:
- To review current knowledge on prion infectious agents and PrP(Sc) structure.
- To explore strategies for de novo generation of prion infectivity.
- To understand challenges in in vitro reconstitution of mammalian prion infectivity.
Main Methods:
- Review of existing literature on prion biochemistry and structure.
- Analysis of proposed strategies for in vitro prion generation.
- Discussion of difficulties in achieving de novo prion infectivity in mammals.
Main Results:
- Mammalian prion infectivity reconstitution in vitro has been difficult.
- Recent synthetic mammalian prions show apparently low infectivity.
- Several hypotheses are proposed to explain low infectivity of synthetic prions.
Conclusions:
- Direct in vitro proof of the prion hypothesis in mammals remains elusive.
- Understanding challenges in reconstitution is crucial for prion research.
- Further investigation is needed to explain low infectivity in synthetic mammalian prions.
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