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Updated: Aug 6, 2026

Site-Specific Lysine Lactylation via Genetic Code Expansion in E. coli and Mammalian Cells
Published on: February 24, 2026
Unveiling Lactylation: A Novel Frontier in Cancer Stemness and Therapy
Ting Li1,2,3,4, Hongyu Gu2, Chang Liu5
1School of Pharmacy, Faculty of Medicine, Macau University of Science and Technology, Macau SAR, China.
Abstract:
Cancer stemness represents a dynamic cellular state endowed with tumor-initiating capacity, self-renewal potential, and differentiation plasticity, functioning as a key driver of tumor recurrence, metastasis, and therapy resistance. Tumor metabolism and epigenetic regulation are two fundamental mechanisms that modulate cancer stemness. Lactylation, a novel post-translational modification, has emerged as a pivotal bridge linking these two processes. Accumulating evidence highlights elevated lactylation as a critical driver of cancer stemness. To elucidate the underlying mechanisms, we systematically evaluate how lactylation orchestrates the cancer stem cell (CSC) landscape across four functional dimensions: self-renewal maintenance, stemness-associated signaling activation, microenvironmental adaptation, and lineage plasticity induction. Furthermore, we summarize the dynamic regulatory network governing this modification, comprising both key enzymes and indirect modulators. Beyond highlighting promising therapeutic targets and preclinical successes, we critically assess the significant challenges hindering clinical translation. This framework provides a roadmap for targeting the metabolic-epigenetic circuitry of CSCs to combat therapy resistance and metastasis.
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