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Updated: Sep 23, 2025

Investigating the Spreading and Toxicity of Prion-like Proteins Using the Metazoan Model Organism C. elegans
Published on: January 8, 2015
The Role of Extracellular Matrix Components in the Spreading of Pathological Protein Aggregates
Edoardo Moretto1,2,3, Skye Stuart2,3, Sunaina Surana2,3,4
1Institute of Neuroscience, National Research Council, CNR, Milan, Italy.
Abstract:
Several neurodegenerative diseases are characterized by the accumulation of aggregated misfolded proteins. These pathological agents have been suggested to propagate in the brain via mechanisms similar to that observed for the prion protein, where a misfolded variant is transferred from an affected brain region to a healthy one, thereby inducing the misfolding and/or aggregation of correctly folded copies. This process has been characterized for several proteins, such as α-synuclein, tau, amyloid beta (Aβ) and less extensively for huntingtin and TDP-43. α-synuclein, tau, TDP-43 and huntingtin are intracellular proteins, and their aggregates are located in the cytosol or nucleus of neurons. They have been shown to spread between cells and this event occurs, at least partially, via secretion of these protein aggregates in the extracellular space followed by re-uptake. Conversely, Aβ aggregates are found mainly extracellularly, and their spreading occurs in the extracellular space between brain regions. Due to the inherent nature of their spreading modalities, these proteins are exposed to components of the extracellular matrix (ECM), including glycans, proteases and core matrix proteins. These ECM components can interact with or process pathological misfolded proteins, potentially changing their properties and thus regulating their spreading capabilities. Here, we present an overview of the documented roles of ECM components in the spreading of pathological protein aggregates in neurodegenerative diseases with the objective of identifying the current gaps in knowledge and stimulating further research in the field. This could potentially lead to the identification of druggable targets to slow down the spreading and/or progression of these pathologies.
Insights
Misfolded protein aggregates spread in neurodegenerative diseases. Extracellular matrix components influence this spread, offering potential therapeutic targets to slow disease progression.
Area of Science:
- Neuroscience
- Biochemistry
- Pathology
Background:
- Neurodegenerative diseases involve misfolded protein aggregation.
- Pathological proteins like alpha-synuclein, tau, amyloid beta, huntingtin, and TDP-43 spread through the brain.
- Extracellular matrix (ECM) components interact with these protein aggregates.
Purpose of the Study:
- To review the role of ECM components in the spread of pathological protein aggregates.
- To identify knowledge gaps and stimulate research in this area.
- To explore potential therapeutic targets for neurodegenerative diseases.
Main Methods:
- Literature review of studies on protein aggregate spreading and ECM interactions.
- Analysis of mechanisms of protein propagation in neurodegenerative diseases.
- Identification of ECM components that modulate protein aggregate properties.
Main Results:
- ECM components, including glycans and proteases, interact with misfolded proteins.
- These interactions can alter protein properties, influencing their spread.
- Both intracellular and extracellular protein aggregates are exposed to the ECM.
Conclusions:
- ECM components play a significant role in regulating the spread of pathological proteins.
- Targeting ECM interactions could offer novel therapeutic strategies for neurodegenerative diseases.
- Further research is needed to fully elucidate these mechanisms and develop effective treatments.
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