Authors
Andreas Carlsson, Emil Axell, Johan Wallerstein, Dev Thacker, Ulf Olsson, Sara Linse
Published in
Communications chemistry. Volume 9. Issue 1. Aug 01, 2026. Epub Aug 01, 2026.
Abstract
The aggregation of the tau protein into intraneuronal fibrillar tangles is closely associated with the pathology of Alzheimer's disease. The endogenous defense system against this process includes molecular chaperones, among which DNAJB6b has emerged as a key component. Using a tau model system comprising the tau fragment 304-380C322S, which spans the amyloidogenic core of ex vivo Alzheimer's disease fibrils, we investigated the impact of DNAJB6b on tau fibril formation. Here, we show that DNAJB6b potently delays tau aggregation by co-assembling with small tau aggregates and by binding to mature fibrils, thereby reducing their ability to catalyze further fibril growth. This interplay between tau and the chaperone results in greatly reduced fibril formation rate and a lower final fibril mass, which we interpret as increased tau solubility. Moreover, solution-state NMR spectroscopy confirms that DNAJB6b does not interact with tau monomers.
PMID:
42547528
Bibliographic data and abstract were imported from PubMed on 04 Aug 2026.
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