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Lysine Succinylation Is a Frequently Occurring Modification in Prokaryotes and Eukaryotes and Extensively Overlaps with Acetylation

Cell Reports · 2013 · Vol. 4(4) · pp. 842–851
Brian T. WeinertChristian SchölzSebastian WagnerVytautas IešmantavičiusDan SuJ. DanielChunaram Choudhary

Abstract

Recent studies have shown that lysines can be posttranslationally modified by various types of acylations. However, except for acetylation, very little is known about their scope and cellular distribution. We mapped thousands of succinylation sites in bacteria (E. coli), yeast (S. cerevisiae), human (HeLa) cells, and mouse liver tissue, demonstrating widespread succinylation in diverse organisms. A majority of succinylation sites in bacteria, yeast, and mouse liver were acetylated at the same position. Quantitative analysis of succinylation in yeast showed that succinylation was globally altered by growth conditions and mutations that affected succinyl-coenzyme A (succinyl-CoA) metabolism in the tricarboxylic acid cycle, indicating that succinylation levels are globally affected by succinyl-CoA concentration. We preferentially detected succinylation on abundant proteins, suggesting that succinylation occurs at a low level and that many succinylation sites remain unidentified. These data provide a systems-wide view of succinylation and its dynamic regulation and show its extensive overlap with acetylation.

Sirtuins and Resveratrol in MedicinePeptidase Inhibition and AnalysisUbiquitin and proteasome pathwaysSuccinylationAcetylationLysineYeastBiochemistryBiologyChemistryCell biologyAmino acidGene

MeSH terms

AcetylationAcyl Coenzyme AAmino Acid SequenceAnimalsCitric Acid CycleEscherichia coliHeLa CellsHumansLysineMolecular Sequence DataProtein Processing, Post-TranslationalSaccharomyces cerevisiaeProteomeAmino Acid MotifsSaccharomyces cerevisiae Proteins

Funding

  • European Commission
  • Lundbeckfonden
  • Danmarks Frie Forskningsfond
  • Novo Nordisk Fonden
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