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Shu-Qiang Zhao

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Open access Aug 2026

Programmable ZBTB7A RNA N6-methyladenosine site-specific demethylation suppresses colorectal cancer liver metastasis

Colorectal cancer liver metastasis (CRLM) is the primary cause of CRC-related mortality, with inevitable chemoresistance to targeted therapies and immunotherapy. N6-methyladenosine (m6A), as a crucial epigenetic regulator of gene expression and cellular physiology, involved in the pathogenesis of CRLM. Precise manipulation of m6A modifications could offer a non-pharmacological precision treatment for many diseases. However, the precise editing of m6A modification in regulating CRLM progression remains elusive. Here we integrated multi-omics and identified zinc finger and BTB domain-containing 7A (ZBTB7A) as an m6A-modified transcription factor that promoted CRLM. Mechanistically, METTL3-mediated m6A modification of ZBTB7A facilitated recognition by the m6A reader YTHDF1/3 complex, enhancing its translation and expression. This m6A-dependent regulation promoted CRLM progression via activation of the ARHGAP26/Rho GTPase signaling axis. Notably, we applied a targeted RNA m6A erasure (TRME) system to achieve site-specific demethylation at a single site (m6A_site_411666) within ZBTB7A mRNA, without perturbing m6A abundance. Temporal demethylation at this site is sufficient to inhibit the CRC cell migration. This study unveils the critical role of the METTL3/ZBTB7A/ARHGAP26 axis in the process of m6A-mediated CRLM and positions m6A precise editing as a promising therapy in the preclinical treatment of CRLM.

Xue-Na Chen, Shu-Qiang Zhao, Bochen Liu et al. · 0 citations

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