bioRxiv · 10.64898/2026.07.31.742027
Reduced tubulin polyglutamylation perturbs neuronal function and causes late-onset neurodegeneration
Abstract
Microtubules are essential for neuronal functions and are involved in many neurodegenerative disorders. A posttranslational modification (PTM) of neuronal microtubules, polyglutamylation, was shown to control cargo transport, Tau protein binding to microtubules and to induce early-onset neurodegeneration when exceeding physiological levels. To determine the physiological importance of this PTM, we characterised mouse models with reduced polyglutamylation. We demonstrate that these mice develop late-onset atrophy of the olfactory bulb and frontal cortex, progressively reduced dendritic spine density, and deficits in olfaction, memory, and cognitive control. This indicates an important role of polyglutamylation in neuronal function. To test whether the observed defects are linked to neurodegeneration, we combined mice with reduced polyglutamylation with a transgenic model for tauopathy. Strikingly, reduced polyglutamylation accelerated the premature demise of mice transgenic for human Tau carrying the P301S mutation. Our work thus reveals key roles of microtubule polyglutamylation in neuronal function with implications for late-onset neurodegeneration linked to Tau pathology.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Chakraborty, S., Poggini, S., Albanese, N. C., Ruskova, M., Lavenir, I., Boido, D., Karhanova, A., Besse, L., Al-Inaya, Y., Lebrun, L., Henriot, V., Lansky, Z., Goedert, M., Ciobanu, L., Balastik, M., Branchi, I., Janke, C., Magiera, M. M.. 2026-08-05. Reduced tubulin polyglutamylation perturbs neuronal function and causes late-onset neurodegeneration. https://doi.org/10.64898/2026.07.31.742027
Cite the original work for its findings. Save a collection to share your selection of sources.