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Communications Biology· 2026Q1

YAP1, kanonik sürücü gen mutasyonları yerine DNA demetilasyonu yoluyla hepatoselüler karsinomu indükler

YAP1 induces hepatocellular carcinoma via DNA demethylation rather than by canonical driver gene mutations

Misaki Kosaka, Yoshimi Okamoto‐Uchida, Haruka Hirose, Yuya Nagaoka ve diğerleri

Kısa özet

YAP1 aktivasyonu, kanonik sürücü gen mutasyonlarından ziyade DNA demetilasyonu yoluyla hepatoselüler karsinom (HCC) gelişimini tetikler.

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Özet (abstract)

Abstract Large-scale genome sequencing analyses have identified driver gene mutations (DGMs) in most cancers as well as their associated tumorigenic mechanisms. However, a small fraction of cancers are not positive for these canonical DGMs, leaving the mechanisms underpinning their formation a mystery. We hypothesized that canonical DGM-negative cancers might be driven by activation of the transcriptional coactivator YAP1 that led to the induction of epigenetic changes. To test this theory, we established a mouse mosaic model of hepatocellular carcinoma (HCC) in which we induced YAP1-TEAD activation in a few hepatocytes. Whole-exome sequencing did not identify canonical DGMs in HCCs, but bisulfite sequencing revealed widespread DNA demethylation leading to the transcriptional activation of multiple oncogenes. Knockdown of the DNA demethylation-promoting gene, Tet1 , attenuated HCC formation in these mice. Single-cell spatial transcriptomics identified a Tet1 -high subpopulation of HCC cells that interacted with other hepatic cell types. Our mechanistic mouse data align with the observation that YAP1–TEAD–TET1-associated signatures were also elevated in hepatocytes from patients with Fontan-associated liver disease (FALD), a condition associated with the development of HCCs with lower frequencies of canonical DGMs. Our study suggests that the YAP1-TEAD-TET1 axis promotes canonical DGM-negative HCC development, and provides new insights into the molecular processes involved.

Yazarların özeti; kaynağından alınmıştır. Communications Biology, 2026 · DOI ↗

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