Data
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.5061/dryad.bvq83bkc0&rft.title=Alzheimer’s disease: Ablating single master site abolishes tau hyperphosphorylation&rft.identifier=10.5061/dryad.bvq83bkc0&rft.publisher=Macquarie University&rft.description=Hyper-phosphorylation of the neuronal tau protein is a hallmark of neurodegenerative tauopathies like Alzheimer’s disease. A central unanswered question is why tau becomes progressively hyper-phosphorylated. Here, we show that tau phosphorylation is governed by interdependence - a mechanistic link between initial site-specific and subsequent multi-site phosphorylation. Systematic assessment of site interdependence identified distinct residues (Threonine-50, -69, -181) as master sites that determine propagation of phosphorylation at multiple epitopes. CRISPR point mutation and expression of human tau in Alzheimer’s mice showed that site interdependence governs physiologic and amyloid-associated multi-site phosphorylation and cognitive deficits, respectively. Combined targeting of master sites and p38α, the most central tau kinase linked to interdependence, synergistically ablated hyper-phosphorylation. In summary, our work delineates how complex tau phosphorylation arises to inform therapeutic and biomarker design for tauopathies.MethodsRaw Immunoblot data for Figure 1. Chemiluninescence signals were imaged on a ChemiDoc MP (Biorad) digital system.&rft.creator=Alexander Volkerling&rft.creator=Amanda RP Tan&rft.creator=Anne Poljak&rft.creator=Arne Ittner&rft.creator=Holly Ahel&rft.creator=Kristie Stefanoska&rft.creator=Mehul Gajwani&rft.creator=Prita Asih&rft.date=2022&rft_rights= https://creativecommons.org/publicdomain/zero/1.0/&rft_subject=Other education not elsewhere classified&rft_subject=Medical and health sciences&rft.type=dataset&rft.language=English Access the data

Full description

Hyper-phosphorylation of the neuronal tau protein is a hallmark of neurodegenerative tauopathies like Alzheimer’s disease. A central unanswered question is why tau becomes progressively hyper-phosphorylated. Here, we show that tau phosphorylation is governed by interdependence - a mechanistic link between initial site-specific and subsequent multi-site phosphorylation. Systematic assessment of site interdependence identified distinct residues (Threonine-50, -69, -181) as master sites that determine propagation of phosphorylation at multiple epitopes. CRISPR point mutation and expression of human tau in Alzheimer’s mice showed that site interdependence governs physiologic and amyloid-associated multi-site phosphorylation and cognitive deficits, respectively. Combined targeting of master sites and p38α, the most central tau kinase linked to interdependence, synergistically ablated hyper-phosphorylation. In summary, our work delineates how complex tau phosphorylation arises to inform therapeutic and biomarker design for tauopathies.

Methods


Raw Immunoblot data for Figure 1. Chemiluninescence signals were imaged on a ChemiDoc MP (Biorad) digital system.

Issued: 13 05 2022

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Identifiers
ACN 633 798 857