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Kinase-specific phosphorylation of tau outside the amyloid core encodes fibril fold selection

Ramesh, R.; Banerjee, S.; Gajula Balija, M. B.; Chakraborty, P.; Dienemann, C.; Landau, M.; Zweckstetter, M.

2026-08-04 molecular biology
10.64898/2026.08.04.742669 bioRxiv
Show abstract

Tauopathies are defined by the accumulation of filamentous tau assemblies that adopt disease-specific molecular conformations, or tau strains. Although tau is extensively hyperphosphorylated in Alzheimers disease, how phosphorylation patterns influence tau folding and strain selection remains unclear. Here, we show that site-specific phosphorylation of 0N3R tau by extracellular signal-regulated kinase 2 (ERK2), occurring predominantly within the proline-rich region and largely excluding the microtubule-binding domain, is sufficient to direct tau assembly into a structurally homogeneous fibril conformation. Residue-resolved NMR spectroscopy identifies a defined and quantifiable ERK2 phosphorylation pattern in the proline-rich region of tau. Cryo-electron microscopy at 3.0 [A] resolution reveals that ERK2-phosphorylated 3R tau assembles into filaments with an ordered cross-{beta} fold adopting an Alzheimers disease PHF fold, despite the absence of phospho-sites within the fibril core. These filaments exhibit robust seeding activity in tau biosensor cells. Together, these results demonstrate that kinase-specific phosphorylation outside the amyloid core can be sufficient to bias tau toward a defined fibril structure, establishing a direct mechanistic link between kinase specificity, post-translational modification, and tau strain formation.

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