Pharmaceutical screen identifies novel target processes for activation of autophagy with a broad translational potential

药物筛选确定了具有广泛转化潜力的激活自噬的新靶点过程

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作者:Santosh Chauhan, Zahra Ahmed, Steven B Bradfute, John Arko-Mensah, Michael A Mandell, Seong Won Choi, Tomonori Kimura, Fabien Blanchet, Anna Waller, Michal H Mudd, Shanya Jiang, Larry Sklar, Graham S Timmins, Nicole Maphis, Kiran Bhaskar, Vincent Piguet, Vojo Deretic

Abstract

Autophagy is a conserved homeostatic process active in all human cells and affecting a spectrum of diseases. Here we use a pharmaceutical screen to discover new mechanisms for activation of autophagy. We identify a subset of pharmaceuticals inducing autophagic flux with effects in diverse cellular systems modelling specific stages of several human diseases such as HIV transmission and hyperphosphorylated tau accumulation in Alzheimer's disease. One drug, flubendazole, is a potent inducer of autophagy initiation and flux by affecting acetylated and dynamic microtubules in a reciprocal way. Disruption of dynamic microtubules by flubendazole results in mTOR deactivation and dissociation from lysosomes leading to TFEB (transcription factor EB) nuclear translocation and activation of autophagy. By inducing microtubule acetylation, flubendazole activates JNK1 leading to Bcl-2 phosphorylation, causing release of Beclin1 from Bcl-2-Beclin1 complexes for autophagy induction, thus uncovering a new approach to inducing autophagic flux that may be applicable in disease treatment.

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