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SIRT3-dependent deacetylation exacerbates acetaminophen hepatotoxicity.


ABSTRACT: Acetaminophen/paracetamol-induced liver failure--which is induced by the binding of reactive metabolites to mitochondrial proteins and their disruption--is exacerbated by fasting. As fasting promotes SIRT3-mediated mitochondrial-protein deacetylation and acetaminophen metabolites bind to lysine residues, we investigated whether deacetylation predisposes mice to toxic metabolite-mediated disruption of mitochondrial proteins. We show that mitochondrial deacetylase SIRT3(-/-) mice are protected from acetaminophen hepatotoxicity, that mitochondrial aldehyde dehydrogenase 2 is a direct SIRT3 substrate, and that its deacetylation increases acetaminophen toxic-metabolite binding and enzyme inactivation. Thus, protein deacetylation enhances xenobiotic liver injury by modulating the binding of a toxic metabolite to mitochondrial proteins.

SUBMITTER: Lu Z 

PROVIDER: S-EPMC3147261 | biostudies-literature | 2011 Jul

REPOSITORIES: biostudies-literature

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SIRT3-dependent deacetylation exacerbates acetaminophen hepatotoxicity.

Lu Zhongping Z   Bourdi Mohammed M   Li Jian H JH   Aponte Angel M AM   Chen Yong Y   Lombard David B DB   Gucek Marjan M   Pohl Lance R LR   Sack Michael N MN  

EMBO reports 20110701 8


Acetaminophen/paracetamol-induced liver failure--which is induced by the binding of reactive metabolites to mitochondrial proteins and their disruption--is exacerbated by fasting. As fasting promotes SIRT3-mediated mitochondrial-protein deacetylation and acetaminophen metabolites bind to lysine residues, we investigated whether deacetylation predisposes mice to toxic metabolite-mediated disruption of mitochondrial proteins. We show that mitochondrial deacetylase SIRT3(-/-) mice are protected fro  ...[more]

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