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The NAT10/c-Myc positive feedback loop orchestrates tRNA ac4C modification and OTUB1-mediated protein stabilization to drive anaplastic thyroid carcinoma progression

  • Bo Wei,
  • Haixi Zhao,
  • Shi Chang,
  • Wenlong Wang

摘要

Background

Epitranscriptomic regulation of tRNA modifications has emerged as an important mechanism in cancer progression by influencing oncogenic translation. Anaplastic thyroid carcinoma (ATC) is a highly aggressive malignancy with limited therapeutic options. Although N-acetyltransferase 10 (NAT10) is frequently overexpressed in multiple cancers, its functional role and therapeutic potential in ATC remain unclear.

Methods

We employed integrated approaches including bioinformatics analyses,in vitro and in vivo assays, multi-omics profiling (mRNA-seq, Ribo-seq, tRNA RedaC-seq), and mechanistic studies (ChIP, LC–MS and ubiquitination assays) in ATC cell lines and xenograft models.

Results

NAT10 is significantly upregulated in ATC and correlates with poor prognosis. Functional assay demonstrates that NAT10 enhances ATC cell proliferation and invasion in vitro and in vivo. The targeted inhibition of NAT10 using the small molecule inhibitor remodelin effectively suppresses ATC cell growth. Mechanistically, NAT10 forms a positive feedback loop with the transcription factor c-Myc: c-Myc transcriptionally activates NAT10, whereas NAT10 is associated with enhanced translation of c-Myc in conjunction with tRNA ac4C modification. NAT10 depletion reduces global translation efficiency, accompanied by decreased tRNA ac4C levels, and also affects c-Myc protein stability via the deubiquitinase OTUB1. Moreover, combined treatment with remodelin and doxorubicin exhibits synergistic antitumor effects in both in vitro and in vivo models.

Conclusions

These findings identify a NAT10/c-Myc positive feedback loop associated with tRNA ac4C modification and protein stabilization in ATC. Targeting this regulatory axis with remodelin in combination with doxorubicin may represent a promising therapeutic strategy.

Graphical Abstract

NAT10 promotes a c-Myc positive feedback loop via tRNA ac⁴C modification and OTUB1-mediated stabilization, driving ATC progression.