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Investigating the Spreading and Toxicity of Prion-like Proteins Using the Metazoan Model Organism C. elegans
Published on: January 8, 2015
Prion disease: a deadly disease for protein misfolding
Chiranjib Chakraborty1, Shyam Nandi, Snehasis Jana
1Glenmark Lab, C-33 Nizamuddin East, New Delhi-110013, India. drchiranjib@yahoo.com
Abstract:
An infectious particle, termed prion, composed largely and perhaps solely of a single protein, is the likely causative agent of prion disease. It produces lethal decline of cognitive and motor function. The responsible protein arrives at a pathogenic state by misfolding from a normal form that has ubiquitous tissue distribution. Prion diseases are often called spongiform encephalopathies. Probably most mammalian species develop these diseases. Specific examples in various animals are -Scrapie, Transmissible Mink Encephalopathy (TME ), Chronic Wasting Disease(CWD) and bovine spongiform encephalopathy (BSE). Humans are also susceptible to several prion diseases: Creutzfeld-Jacob Disease (CJD), Gerstmann-Straussler-Scheinker Syndrome (GSS), Fatal Familial Insomnia (FFI), Kuru and Alpers Syndrome. This paper reviews transmission of this diseases, protein involvement, nature of protein, the conversion process from PrP(c) to PrP(Sc), conversion of prion protein in vitro, the different proposed models for the conversion of PrP(c) to PrP(Sc), prion and other amyloid diseases, prion strains, structure of PrP(c) the particular process that may induce prion disease, and immunization against these diseases.
Insights
Prions, infectious proteins, cause fatal neurodegenerative diseases like Creutzfeldt-Jakob disease by misfolding. This review explores prion disease transmission, protein conversion, and potential immunizations.
Area of Science:
- Neuroscience
- Protein Biochemistry
- Infectious Diseases
Background:
- Prion diseases, or spongiform encephalopathies, are fatal neurodegenerative conditions affecting mammals.
- They are caused by infectious proteins called prions, which arise from misfolded normal cellular proteins.
Purpose of the Study:
- To review the transmission, protein involvement, and conversion mechanisms of prion diseases.
- To discuss prion strains, structure, disease induction, and potential immunization strategies.
Main Methods:
- Literature review of prion disease research.
- Analysis of protein misfolding and conversion processes (PrPc to PrPSc).
- Examination of proposed conversion models and prion strains.
Main Results:
- Prions are composed of misfolded proteins, leading to cognitive and motor decline.
- Various animal and human prion diseases are identified, including Scrapie, BSE, CWD, and CJD.
- The conversion of normal prion protein (PrPc) to its pathogenic form (PrPSc) is central to disease pathogenesis.
Conclusions:
- Understanding prion protein conversion is crucial for comprehending prion diseases.
- Further research into prion strains, structure, and disease induction may lead to effective immunization strategies.
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