DOI: 10.1126/sciadv.aeg1445 ISSN: 2375-2548

Scalable human neuronal models of tauopathy producing endogenous seed-competent 4R tau

Eliona Tsefou, Sumi Bez, Timothy J. Y. Birkle, Martha Foiani, Naoto Watamura, Mathieu Bourdenx, Daria Gavriouchkina, Emir Turkes, Samuel Crawford, Rachel Coneys, Adrian M. Isaacs, Karen E. Duff

The accumulation of pathological four-repeat (4R) tau is central to several frontotemporal dementia (FTD) subtypes, but human neuronal models amenable to high-throughput screening of 4R tau–targeting therapies remain very limited. To address this, we developed induced pluripotent stem cell (iPSC)–derived i 3 Neuron (i 3 N) lines expressing >75% 4R tau, driven by FTD splice-shifting mutations (Ser 305 Asn; S305N or S305N/IVS10 + 3). These neurons develop hyperphosphorylated tau and demonstrate somatodendritic mislocalization. These i 3 N neurons develop endogenous seed-competent tau and present pentameric formyl thiophene acetic acid–(pFTAA)-positive tau assemblies after 28 days in culture. For scalable screening, we CRISPR-engineered an HiBiT luminescence tag at the endogenous MAPT locus into the S305N/IVS10 + 3 iPSC line, enabling precise quantification of tau levels and pharmacological responses. The model responded predictably to compounds affecting tau clearance, demonstrating its suitability for drug discovery. Overall, this i 3 N platform recapitulates key features of 4R tauopathy and provides a robust system to identify therapeutic modulators of pathological tau.

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