Large-Scale Identification of Protein Crotonylation Reveals Its Role in Multiple Cellular Functions

  • Wei Wei
  • , Anqi Mao
  • , Bin Tang
  • , Qiufang Zeng
  • , Shennan Gao
  • , Xiaoguang Liu
  • , Lu Lu
  • , Wenpeng Li
  • , James X. Du
  • , Jiwen Li
  • , Jiemin Wong*
  • , Lujian Liao
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

133 Scopus citations

Abstract

Lysine crotonylation on histones is a recently identified post-translational modification that has been demonstrated to associate with active promoters and to directly stimulate transcription. Given that crotonyl-CoA is essential for the acyl transfer reaction and it is a metabolic intermediate widely localized within the cell, we postulate that lysine crotonylation on nonhistone proteins could also widely exist. Using specific antibody enrichment followed by high-resolution mass spectrometry analysis, we identified hundreds of crotonylated proteins and lysine residues. Bioinformatics analysis reveals that crotonylated proteins are particularly enriched for nuclear proteins involved in RNA processing, nucleic acid metabolism, chromosome organization, and gene expression. Furthermore, we demonstrate that crotonylation regulates HDAC1 activity, expels HP1α from heterochromatin, and inhibits cell cycle progression through S-phase. Our data thus indicate that lysine crotonylation could occur in a large number of proteins and could have important regulatory roles in multiple nuclei-related cellular processes.

Original languageEnglish
Pages (from-to)1743-1752
Number of pages10
JournalJournal of Proteome Research
Volume16
Issue number4
DOIs
StatePublished - 7 Apr 2017

Keywords

  • DNA replication
  • cell cycle
  • lysine crotonylation
  • mass spectrometry
  • proteomics

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