Tau monomer encodes strains.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 30526844.
- Also identified by DOI 10.7554/eLife.37813 and PMC identifier 6289568.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Tauopathies have diverse presentation, progression, and neuropathology. They are linked to tau prion strains, self-replicating assemblies of unique quaternary conformation, whose origin is unknown. Strains can be propagated indefinitely in cultured cells, and induce unique patterns of transmissible neuropathology upon inoculation into mice. DS9 and DS10 cell lines propagate different synthetic strains that derive from recombinant tau. We previously observed that tau monomer adopts two conformational states: one that is inert (M<sub>i</sub>) and one that is seed-competent (M<sub>s</sub>) (Mirbaha et al., 2018). We have now found that M<sub>s</sub> itself is comprised of multiple stable ensembles that encode unique strains. DS9 monomer inoculated into naive cells encoded only DS9, whereas DS10 monomer encoded multiple sub-strains. Sub-strains each induced distinct pathology upon inoculation into a tauopathy mouse model (PS19). M<sub>s</sub> purified from an Alzeimer's disease brain encoded a single strain. Conversely, M<sub>s</sub> from a corticobasal degeneration brain encoded three sub-strains, in which monomer from any one re-established all three upon inoculation into cells. Seed competent tau monomer thus adopts multiple, stable seed-competent conformations, each of which encodes a limited number of strains. This provides insight into the emergence of distinct tauopathies, and may improve diagnosis and therapy.
Medical subject headings
- Brain
- Lymphocytes
- Prions
- Tauopathies
- tau Proteins