Prolonged tau clearance and stress vulnerability rescue by pharmacological activation of autophagy in tauopathy neurons

通过药理学激活 tau 蛋白病神经元的自噬来延长 tau 蛋白清除时间并挽救应激脆弱性

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作者:M Catarina Silva, Ghata A Nandi, Sharon Tentarelli, Ian K Gurrell, Tanguy Jamier, Diane Lucente, Bradford C Dickerson, Dean G Brown, Nicholas J Brandon, Stephen J Haggarty

Abstract

Tauopathies are neurodegenerative diseases associated with accumulation of abnormal tau protein in the brain. Patient iPSC-derived neuronal cell models replicate disease-relevant phenotypes ex vivo that can be pharmacologically targeted for drug discovery. Here, we explored autophagy as a mechanism to reduce tau burden in human neurons and, from a small-molecule screen, identify the mTOR inhibitors OSI-027, AZD2014 and AZD8055. These compounds are more potent than rapamycin, and robustly downregulate phosphorylated and insoluble tau, consequently reducing tau-mediated neuronal stress vulnerability. MTORC1 inhibition and autophagy activity are directly linked to tau clearance. Notably, single-dose treatment followed by washout leads to a prolonged reduction of tau levels and toxicity for 12 days, which is mirrored by a sustained effect on mTORC1 inhibition and autophagy. This new insight into the pharmacodynamics of mTOR inhibitors in regulation of neuronal autophagy may contribute to development of therapies for tauopathies.

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