Lysine l-lactylation is the dominant lactylation isomer induced by glycolysis

Author:

Zhang DiORCID,Gao JinjunORCID,Zhu ZhijunORCID,Mao Qianying,Xu Zhiqiang,Singh Pankaj K.ORCID,Rimayi Cornelius C.ORCID,Moreno-Yruela CarlosORCID,Xu ShulingORCID,Li GongyuORCID,Sin Yi-ChengORCID,Chen Yue,Olsen Christian A.ORCID,Snyder Nathaniel W.ORCID,Dai LunzhiORCID,Li LingjunORCID,Zhao YingmingORCID

Abstract

AbstractLysine l-lactylation (Kl-la) is a novel protein posttranslational modification (PTM) driven by l-lactate. This PTM has three isomers: Kl-la, N-ε-(carboxyethyl)-lysine (Kce) and d-lactyl-lysine (Kd-la), which are often confused in the context of the Warburg effect and nuclear presence. Here we introduce two methods to differentiate these isomers: a chemical derivatization and high-performance liquid chromatography analysis for efficient separation, and isomer-specific antibodies for high-selectivity identification. We demonstrated that Kl-la is the primary lactylation isomer on histones and dynamically regulated by glycolysis, not Kd-la or Kce, which are observed when the glyoxalase system was incomplete. The study also reveals that lactyl-coenzyme A, a precursor in l-lactylation, correlates positively with Kl-la levels. This work not only provides a methodology for distinguishing other PTM isomers, but also highlights Kl-la as the primary responder to glycolysis and the Warburg effect.

Publisher

Springer Science and Business Media LLC

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