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February 8, 2026Scientific Reports0 citationsOpen Access

Investigating the oncogenic role of aberrant EZH2 in hepatoblastoma

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KGKathryn GlaserEDErica A. K. DepasqualeLBLara Berklite

Key Points

  • This research aims to explore the oncogenic role of EZH2 in the progression of hepatoblastoma.
  • Used single-nuclear RNA sequencing to identify tumor populations.
  • Conducted genomic and transcriptomic profiling for EZH2 overexpression.
  • Performed targeted sequencing on patient tumors to identify variants.
  • Administered pharmacologic inhibition of EZH2 with EPZ-6438.
  • Evaluated in vitro and in vivo effects on proliferation and cisplatin sensitivity.
  • Identified a cycling Hep T population enriched for EZH2 expression in hepatoblastoma.
  • Showed disrupted PRC2 complex with mislocalization of SUZ12.
  • Confirmed correlation between EZH2 overexpression and mitotic regulators AURKB and Ki67.
  • Demonstrated reduced proliferation in HB cells upon EZH2 inhibition with EPZ-6438.
  • Indicated potential modulation of cisplatin sensitivity in hepatoblastoma cells.

Abstract

Hepatoblastoma (HB) is the most common pediatric liver malignancy. However, its cellular origin and molecular drivers remain poorly defined. Using single-nuclear RNA sequencing (snRNA-seq), we identified a proliferative, hepatocyte-derived tumor cell population (cycling Hep T ) enriched for Enhancer of Zeste Homolog 2 ( EZH2) expression, particularly in the aggressive embryonal subtype. Integrative genomic and transcriptomic profiling confirmed EZH2 overexpression. Disruption of the PRC2 complex was evident through mislocalization and reduced expression of SUZ12, a core component. EZH2 overexpression correlated with upregulation of mitotic regulators such as AURKB and Ki67 in human HB gene expression analysis as compared to background liver. Targeted sequencing identified variants of uncertain significance in EZH2 and SUZ12 in 11 of 11 patient tumors. Pharmacologic inhibition of EZH2 with EPZ-6438 reduced proliferation and sensitized HB cells to cisplatin through gene regulation, potentially modulating platinum accumulation both in vitro and in vivo. In summary, EZH2 promotes HB progression through epigenetic silencing and noncanonical signaling pathways. These findings support EZH2’s contribution to HB pathogenesis, therefore identifying it as a novel therapeutic target.

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Cite This Study

Glaser et al. (2026) studied this question.

synapsesocial.com/papers/6987eb5df6bacdd2fe8fc858https://doi.org/10.1038/s41598-026-38038-0
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