Deletion of HOG1 leads to osmosensitivity in starvation-induced, but not rapamycin-dependent Atg8 degradation and proteolysis: Further evidence for different regulatory mechanisms in yeast autophagy

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Abstract

The mechanisms of regulation of autophagy are still obscure. In mammalian liver, starvation-induced autophagic proteolysis is regulated by the cellular hydration state in a microtubule- and p38MAPK-dependent way. Recent work shows that in yeast, loss of Hog1, the yeast orthologue of p38 MAPK, leads to osmosensitivity of starvation-induced autophagy (Prick et al., Biochem J 2006; 394:153-161), pointing to an evolutionary conserved mechanism. In this addendum further experiments from hog1Δ yeast cells are shown, which support the hypothesis that starvation- and rapamycin-induced autophagy processes differ in their susceptibility to osmotic stress. The potential mechanisms are discussed. ©2006 Landes Bioscience.

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Prick, T., Thumm, M., Häussinger, D., & Dahl, S. V. (2006). Deletion of HOG1 leads to osmosensitivity in starvation-induced, but not rapamycin-dependent Atg8 degradation and proteolysis: Further evidence for different regulatory mechanisms in yeast autophagy. Autophagy. Taylor and Francis Inc. https://doi.org/10.4161/auto.2743

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