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March 21, 2026Cell Death and Disease2 citationsOpen Access

NAT10-mediated ac4C RNA acetylation stabilizes CXCL5/DEK mRNA to drive proliferation and metastasis in lung adenocarcinoma

XHXin HuMFMeiqi FengCQChengjin Qi

Key Points

  • This research aims to understand how NAT10-mediated ac4C modification affects mRNA stability and cancer progression in lung adenocarcinoma.
  • Analyzed NAT10 expression in LUAD using tissue samples and cell lines.
  • Employed CRISPR/Cas9 to create NAT10 knockout cells.
  • Used acRIP-seq and RNA-seq to analyze gene expression changes.
  • Conducted functional enrichment analysis on identified pathways.
  • NAT10 expression is significantly upregulated in LUAD tissues and cell lines.
  • NAT10 stabilizes CXCL5 and DEK mRNAs through ac4C modification.
  • NAT10 knockout results in reduced tumor growth and fewer metastases in mouse models.

Abstract

Abstract Investigating the epigenetic mechanisms underlying lung adenocarcinoma (LUAD) through the lens of N 4-acetylcytosine (ac4C) modification could innovate cancer treatment strategies and targets. We used biological information methods to analyze shared data, with a focus on studying N -acetyltransferase 10 (NAT10), which is the only known ac4C “writer” protein. Our analysis revealed a significant upregulation of NAT10 expression in LUAD, a finding that was corroborated by investigations in both LUAD cancer tissue samples and cell lines. Subsequently, we employed CRISPR/Cas9 technology to knock out the NAT10 gene and analyzed the resulting knockout cells using acRIP-seq and RNA-seq techniques. Our findings demonstrated different expressions of the genes C-X-C motif chemokine ligand 5 (CXCL5) and DEK proto-oncogene (DEK), and functional enrichment analysis indicated a strong association with the adhesion signaling pathway. Laboratory experiments revealed that NAT10 acts as an ac4C “writer,” promoting the acetylation of CXCL5 and DEK and thus preventing the degradation of their mRNAs. Moreover, NAT10 was found to significantly affect the number of metastases and tumor growth following the injection of cancer cells into the tail vein of mice. Our research data suggests that targeting NAT10 has the potential to serve as a diagnostic biomarker or prognostic target for developing anti-metastatic therapies aimed at disrupting the adhesion process.

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Cite This Study

Hu et al. (2026) studied this question.

synapsesocial.com/papers/69be35606e48c4981c673873https://doi.org/10.1038/s41419-026-08568-6
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