Proteomics

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Analysis of acetylation stoichiometry suggests that SIRT3 repairs nonenzymatic acetylation lesions


ABSTRACT: Acetylation is frequently detected on mitochondrial enzymes and the sirtuin deacetylase SIRT3 is thought to regulate metabolism by deacetylating mitochondrial proteins. However, the stoichiometry of acetylation has not been studied and is important for understanding whether SIRT3 regulates or suppresses acetylation. Using quantitative mass spectrometry we measured acetylation stoichiometry in mouse liver tissue and found that SIRT3 suppressed acetylation to a very low stoichiometry at its target sites. By examining acetylation changes in the liver, heart, brain, and brown adipose tissue of fasted mice, we found that SIRT3-targeted sites were mostly unaffected by fasting, a dietary manipulation that is thought to regulate metabolism through SIRT3-dependent deacetylation. Globally increased mitochondrial acetylation in fasted liver tissue, higher stoichiometry at mitochondrial acetylation sites, and greater sensitivity of SIRT3-targeted sites to chemical acetylation in vitro and fasting in vivo, suggests a nonenzymatic mechanism of acetylation. Our data indicate that most mitochondrial acetylation occurs as a low-level nonenzymatic protein lesion and that SIRT3 functions as a protein repair factor that removes acetylation lesions from lysine residues.

INSTRUMENT(S): LTQ Orbitrap Velos, Q Exactive

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Heart, Brain, Brown Adipose Tissue, Liver, Fibroblast

SUBMITTER: Brian Weinert  

LAB HEAD: Chuna Choudahary

PROVIDER: PXD000885 | Pride | 2015-09-15

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
20110705_VELOS1_BTW_SA_C1T1_F01.raw Raw
20110705_VELOS1_BTW_SA_C1T1_F02.raw Raw
20110705_VELOS1_BTW_SA_C1T2_F01.raw Raw
20110705_VELOS1_BTW_SA_C1T2_F02.raw Raw
20110705_VELOS1_BTW_SA_C1T3_F01.raw Raw
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Analysis of acetylation stoichiometry suggests that SIRT3 repairs nonenzymatic acetylation lesions.

Weinert Brian T BT   Moustafa Tarek T   Iesmantavicius Vytautas V   Zechner Rudolf R   Choudhary Chunaram C  

The EMBO journal 20150909 21


Acetylation is frequently detected on mitochondrial enzymes, and the sirtuin deacetylase SIRT3 is thought to regulate metabolism by deacetylating mitochondrial proteins. However, the stoichiometry of acetylation has not been studied and is important for understanding whether SIRT3 regulates or suppresses acetylation. Using quantitative mass spectrometry, we measured acetylation stoichiometry in mouse liver tissue and found that SIRT3 suppressed acetylation to a very low stoichiometry at its targ  ...[more]