Ligands binding to the prion protein induce its proteolytic release with therapeutic potential in neurodegenerative proteinopathies.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 34818048.
- Also identified by DOI 10.1126/sciadv.abj1826 and PMC identifier 8612689.
- Licence recorded as CC BY-NC.
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Abstract
The prion protein (PrP<sup>C</sup>) is a central player in neurodegenerative diseases, such as prion diseases or Alzheimer’s disease. In contrast to disease-promoting cell surface PrP<sup>C</sup>, extracellular fragments act neuroprotective by blocking neurotoxic disease-associated protein conformers. Fittingly, PrP<sup>C</sup> release by the metalloprotease ADAM10 represents a protective mechanism. We used biochemical, cell biological, morphological, and structural methods to investigate mechanisms stimulating this proteolytic shedding. Shed PrP negatively correlates with prion conversion and is markedly redistributed in murine brain in the presence of prion deposits or amyloid plaques, indicating a sequestrating activity. PrP-directed ligands cause structural changes in PrP<sup>C</sup> and increased shedding in cells and organotypic brain slice cultures. As an exception, some PrP-directed antibodies targeting repetitive epitopes do not cause shedding but surface clustering, endocytosis, and degradation of PrP<sup>C</sup>. Both mechanisms may contribute to beneficial actions described for PrP-directed ligands and pave the way for new therapeutic strategies against currently incurable neurodegenerative diseases.