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October 11, 2025Journal of Clinical Investigation22 citationsOpen Access

S100a9 lactylation triggers neutrophil trafficking and cardiac inflammation in myocardial ischemia/reperfusion injury

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XWXiaoqi WangXYXiangyu YanGMGe Mang

Key Points

  • Elevated levels of lactylated S100a9 in acute myocardial infarction correlate with increased cardiac death, underscoring its significance in inflammation.
  • S100a9 was identified as lactylated at lysine 26 in neutrophils during myocardial ischemia reperfusion, enhancing neutrophil migration.
  • The enzyme DLAT facilitates lactylation of S100a9 in neutrophils; targeting this pathway may improve cardiac outcomes post-MI/R.
  • Lactylated S100a9 acts as a co-activator for migration-related genes, illustrating its role in neutrophil trafficking during injury.

Abstract

Lactylation, a post-translational modification derived from glycolysis, plays a pivotal role in ischemic heart diseases. Neutrophils are predominantly glycolytic cells that trigger intensive inflammation of myocardial ischemia reperfusion (MI/R). However, whether lactylation regulates neutrophil function during MI/R remains unknown. Employing lactyl proteomics analysis, S100a9 was lactylated at lysine 26 (S100a9K26la) in neutrophils, with elevated levels observed in both acute myocardial infarction (AMI) patients and MI/R model mice. S100a9K26la was demonstrated driving the development of MI/R using mutant knock-in mice. Mechanistically, lactylated S100a9 translocated to the nucleus of neutrophils, where it binded to the promoters of migration-related genes, thereby enhancing their transcription as a co-activator and promoting neutrophil migration and cardiac recruitment. Additionally, lactylated S100a9 was released during NETosis, leading to cardiomyocyte death by disrupting mitochondrial function. The enzyme dihydrolipoyllysine-residue acetyltransferase (DLAT) was identified as the lactyltransferase facilitating neutrophil S100a9K26la post-MI/R, a process that could be restrained by α-lipoic acid. Consistently, targeting DLAT/S100a9K26la axis suppressed neutrophil burden and improved cardiac function post-MI/R. In patients with AMI, elevated S100a9K26la levels in plasma were positively correlated with cardiac death. These findings highlight S100a9 lactylation as a potential therapeutic target for MI/R and as a promising biomarker for evaluating poor prognosis of MI/R.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68ea72339f1bd4df558cedcahttps://doi.org/10.1172/jci194664
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