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May 7, 2026Proceedings of the National Academy of Sciences3 citations

Lactylated NAT10 contributes to elesclomol-triggered cuproptosis via the NAT10/ac4C-DLAT-mRNA/DLAT positive feedback loop in CRC

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WYWen-Dong YangMLMeng-Ru LuQSQi Shen

Key Points

  • This research aims to explore the role of NAT10 and SIRT1 in cuproptosis and their implications for colorectal cancer therapy.
  • Investigation of copper levels and DLAT expression in colorectal cancer tissues.
  • Assessment of NAT10 lactylation and its enhancement of DLAT mRNA stability.
  • Exploration of the effects of elesclomol and selisistat on cuproptosis induction.
  • Elevated copper levels and increased DLAT expression were observed in colorectal cancer tissues.
  • NAT10 lactylation enhances its activity, promoting cuproptosis through DLAT mRNA stabilization.
  • Combined treatment with elesclomol and selisistat effectively induced cuproptosis in CRC.

Abstract

Cuproptosis represents a promising therapeutic strategy for cancer; however, its clinical application remains limited. We observed elevated copper levels and increased expression of DLAT, a key procuproptosis gene, in colorectal cancer (CRC) tissues, suggesting inherent susceptibility to cuproptosis. Furthermore, NAT10 enhances DLAT mRNA stability by mediating its N 4 -acetylcytidine (ac4C) modification, thereby promoting cuproptosis. We also discovered that lactylation of NAT10 at lysine 426 (K426) enhances NAT10 catalytic activity. Conversely, SIRT1 mediates the delactylation of NAT10-K426, leading to the inhibition of cuproptosis. The combination of elesclomol (a cuproptosis inducer) and selisistat (a SIRT1 inhibitor) effectively induced cuproptosis in CRC. Notably, the reduction of soluble DLAT induced by elesclomol treatment was found to enhance NAT10-K426 lactylation. Moreover, DLAT supplementation establishes a positive feedback loop that amplifies cuproptosis. These results underscore the critical role of nonhistone NAT10 lactylation in tumor cuproptosis and highlight the therapeutic potential of targeting this pathway for CRC treatment.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69fbe2f2164b5133a91a2361https://doi.org/10.1073/pnas.2501185123
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