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Science ; 336(6080): 474-7, 2012 Apr 27.
Article in English | MEDLINE | ID: mdl-22539722

ABSTRACT

Protein acetylation emerged as a key regulatory mechanism for many cellular processes. We used genetic analysis of Saccharomyces cerevisiae to identify Esa1 as a histone acetyltransferase required for autophagy. We further identified the autophagy signaling component Atg3 as a substrate for Esa1. Specifically, acetylation of K19 and K48 of Atg3 regulated autophagy by controlling Atg3 and Atg8 interaction and lipidation of Atg8. Starvation induced transient K19-K48 acetylation through spatial and temporal regulation of the localization of acetylase Esa1 and the deacetylase Rpd3 on pre-autophagosomal structures (PASs) and their interaction with Atg3. Attenuation of K19-K48 acetylation was associated with attenuation of autophagy. Increased K19-K48 acetylation after deletion of the deacetylase Rpd3 caused increased autophagy. Thus, protein acetylation contributes to control of autophagy.


Subject(s)
Autophagy , Histone Acetyltransferases/metabolism , Saccharomyces cerevisiae Proteins/metabolism , Saccharomyces cerevisiae/physiology , Ubiquitin-Conjugating Enzymes/metabolism , Acetylation , Autophagy-Related Protein 8 Family , Autophagy-Related Proteins , Carbohydrate Epimerases/genetics , Carbohydrate Epimerases/metabolism , Histone Acetyltransferases/genetics , Histone Deacetylases/genetics , Histone Deacetylases/metabolism , Microtubule-Associated Proteins/metabolism , Mutation , Phagosomes/metabolism , Protein Processing, Post-Translational , Recombinant Fusion Proteins/metabolism , Saccharomyces cerevisiae/enzymology , Saccharomyces cerevisiae/genetics , Saccharomyces cerevisiae Proteins/chemistry , Saccharomyces cerevisiae Proteins/genetics , Ubiquitin-Conjugating Enzymes/chemistry , Ubiquitin-Conjugating Enzymes/genetics
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