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Cyclic immonium ion of lactyllysine reveals widespread lactylation in the human proteome

  • Ning Wan
  • , Nian Wang
  • , Siqin Yu
  • , Hanqing Zhang
  • , Shuo Tang
  • , Dexiang Wang
  • , Wenjie Lu
  • , Huanhuan Li
  • , Daniel G. Delafield
  • , Ying Kong
  • , Xinmiao Wang
  • , Chang Shao
  • , Langlang Lv
  • , Guangji Wang
  • , Renxiang Tan
  • , Nanxi Wang
  • , Haiping Hao
  • , Hui Ye
  • China Pharmaceutical University
  • Nanjing University of Chinese Medicine
  • University of Wisconsin-Madison

Research output: Contribution to journalArticlepeer-review

293 Scopus citations

Abstract

Lactylation was initially discovered on human histones. Given its nascence, its occurrence on nonhistone proteins and downstream functional consequences remain elusive. Here we report a cyclic immonium ion of lactyllysine formed during tandem mass spectrometry that enables confident protein lactylation assignment. We validated the sensitivity and specificity of this ion for lactylation through affinity-enriched lactylproteome analysis and large-scale informatic assessment of nonlactylated spectral libraries. With this diagnostic ion-based strategy, we confidently determined new lactylation, unveiling a wide landscape beyond histones from not only the enriched lactylproteome but also existing unenriched human proteome resources. Specifically, by mining the public human Meltome Atlas, we found that lactylation is common on glycolytic enzymes and conserved on ALDOA. We also discovered prevalent lactylation on DHRS7 in the draft of the human tissue proteome. We partially demonstrated the functional importance of lactylation: site-specific engineering of lactylation into ALDOA caused enzyme inhibition, suggesting a lactylation-dependent feedback loop in glycolysis.

Original languageEnglish
Pages (from-to)854-864
Number of pages11
JournalNature Methods
Volume19
Issue number7
DOIs
StatePublished - Jul 2022
Externally publishedYes

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