Reactive oxygen species, AMP-activated protein kinase, and the transcription cofactor p300 regulate α-tubulin acetyltransferase-1 (αTAT-1/MEC-17)-dependent microtubule hyperacetylation during cell stress

活性氧、AMP 活化蛋白激酶和转录辅因子 p300 调节细胞应激期间 α-微管蛋白乙酰转移酶-1 (αTAT-1/MEC-17) 依赖的微管高乙酰化

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作者:Rafah Mackeh, Séverine Lorin, Ameetha Ratier, Najet Mejdoubi-Charef, Anita Baillet, Arnaud Bruneel, Ahmed Hamaï, Patrice Codogno, Christian Poüs, Daniel Perdiz

Abstract

Beyond its presence in stable microtubules, tubulin acetylation can be boosted after UV exposure or after nutrient deprivation, but the mechanisms of microtubule hyperacetylation are still unknown. In this study, we show that this hyperacetylation is a common response to several cellular stresses that involves the stimulation of the major tubulin acetyltransferase MEC-17. We also demonstrate that the acetyltransferase p300 negatively regulates MEC-17 expression and is sequestered on microtubules upon stress. We further show that reactive oxygen species of mitochondrial origin are required for microtubule hyperacetylation by activating the AMP kinase, which in turn mediates MEC-17 phosphorylation upon stress. Finally, we show that preventing microtubule hyperacetylation by knocking down MEC-17 affects cell survival under stress conditions and starvation-induced autophagy, thereby pointing out the importance of this rapid modification as a broad cell response to stress.

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