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Stabilization of dynamic microtubules by mDia1 drives Tau-dependent Aβ1-42 synaptotoxicity.

The Journal of cell biology (2017-09-08)
Xiaoyi Qu, Feng Ning Yuan, Carlo Corona, Silvia Pasini, Maria Elena Pero, Gregg G Gundersen, Michael L Shelanski, Francesca Bartolini
ZUSAMMENFASSUNG

Oligomeric Amyloid β1-42 (Aβ) plays a crucial synaptotoxic role in Alzheimer's disease, and hyperphosphorylated tau facilitates Aβ toxicity. The link between Aβ and tau, however, remains controversial. In this study, we find that in hippocampal neurons, Aβ acutely induces tubulin posttranslational modifications (PTMs) and stabilizes dynamic microtubules (MTs) by reducing their catastrophe frequency. Silencing or acute inhibition of the formin mDia1 suppresses these activities and corrects the synaptotoxicity and deficits of axonal transport induced by Aβ. We explored the mechanism of rescue and found that stabilization of dynamic MTs promotes tau-dependent loss of dendritic spines and tau hyperphosphorylation. Collectively, these results uncover a novel role for mDia1 in Aβ-mediated synaptotoxicity and demonstrate that inhibition of MT dynamics and accumulation of PTMs are driving factors for the induction of tau-mediated neuronal damage.

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Sigma-Aldrich
Anti-acetyliertes-Tubulin-Antikörper, monoklonaler Antikörper der Maus in Maus hergestellte Antikörper, clone 6-11B-1, purified from hybridoma cell culture
Sigma-Aldrich
Monoklonaler Anti-α-Tubulin-Antikörper in Maus hergestellte Antikörper, clone DM1A, ascites fluid
Sigma-Aldrich
Anti-Aktin-Antikörper, Klon C4, ascites fluid, clone C4, Chemicon®
Sigma-Aldrich
Anti-APP-A4-Antikörper, a.a. 66-81 von APP {NT}, Klon 22C11, clone 22C11, Chemicon®, from mouse