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Updated: Feb 3, 2026

Protein Misfolding Cyclic Amplification of Prions
Published on: November 7, 2012
Independent amplification of co-infected long incubation period low conversion efficiency prion strains
Thomas E Eckland1, Ronald A Shikiya1, Jason C Bartz1
1Department of Medical Microbiology and Immunology, School of Medicine, Creighton University, Omaha, Nebraska, United States of America.
Abstract:
Prion diseases are caused by a misfolded isoform of the prion protein, PrPSc. Prion strains are hypothesized to be encoded by strain-specific conformations of PrPSc and prions can interfere with each other when a long-incubation period strain (i.e. blocking strain) inhibits the conversion of a short-incubation period strain (i.e. non-blocking). Prion strain interference influences prion strain dynamics and the emergence of a strain from a mixture; however, it is unknown if two long-incubation period strains can interfere with each other. Here, we show that co-infection of animals with combinations of long-incubation period strains failed to identify evidence of strain interference. To exclude the possibility that this inability of strains to interfere in vivo was due to a failure to infect common populations of neurons we used protein misfolding cyclic amplification strain interference (PMCAsi). Consistent with the animal bioassay studies, PMCAsi indicated that both co-infecting strains were amplifying independently, suggesting that the lack of strain interference is not due to a failure to target the same cells but is an inherent property of the strains involved. Importantly PMCA reactions seeded with long incubation-period strains contained relatively higher levels of remaining PrPC compared to reactions seeded with a short-incubation period strain. Mechanistically, we hypothesize the abundance of PrPC is not limiting in vivo or in vitro resulting in prion strains with relatively low prion conversion efficiency to amplify independently. Overall, this observation changes the paradigm of the interactions of prion strains and has implications for interspecies transmission and emergence of prion strains from a mixture.
Insights
Long-incubation prion strains do not interfere with each other, even when co-infecting animals or cells. This lack of interference is linked to their lower prion conversion efficiency and abundant PrPC substrate.
Area of Science:
- Neuroscience
- Biochemistry
- Infectious Diseases
Background:
- Prion diseases stem from misfolded prion proteins (PrPSc).
- Prion strains, defined by PrPSc conformation, can interfere, with long-incubation strains blocking short-incubation ones.
- The interaction dynamics between two long-incubation prion strains remain largely unexplored.
Purpose of the Study:
- To investigate whether two long-incubation period prion strains can interfere with each other.
- To determine if observed interference (or lack thereof) is due to neuronal targeting or an inherent strain property.
Main Methods:
- Animal co-infection bioassays with combinations of long-incubation prion strains.
- Protein Misfolding Cyclic Amplification Strain Interference (PMCAsi) to assess in vitro interactions.
- Quantification of remaining PrPC substrate in PMCA reactions.
Main Results:
- Co-infection studies in animals showed no evidence of interference between long-incubation prion strains.
- PMCAsi confirmed independent amplification of co-infecting long-incubation strains, irrespective of neuronal targeting.
- PMCA reactions with long-incubation strains retained higher levels of PrPC compared to those with short-incubation strains.
Conclusions:
- Long-incubation prion strains do not exhibit interference, suggesting this is an intrinsic characteristic.
- Abundant PrPC substrate likely allows low-efficiency strains to amplify independently without competition.
- Findings alter the understanding of prion strain interactions, impacting interspecies transmission and mixture dynamics.
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