Nuclear factor erythroid 2-related factor 2 and β-Catenin Coactivation in Hepatocellular Cancer: Biological and

Junyan Tao1,2, Yekaterina Krutsenko1,2, Akshata Moghe2,3

  • 1Department of PathologyUniversity of PittsburghSchool of Medicine and University of Pittsburgh Medical CenterPittsburghPA.

Abstract

Insights

Activating mutations in catenin beta-1 (CTNNB1) and nuclear factor erythroid 2-related factor 2 (Nrf2) signaling cooperate to drive hepatocellular carcinoma (HCC) development. Targeting the mammalian target of rapamycin (mTOR) pathway with everolimus significantly reduced tumor burden in preclinical HCC models.

Area of Science:

  • Hepatocellular carcinoma (HCC) research
  • Cancer signaling pathways
  • Molecular oncology

Background:

  • Hepatocellular carcinoma (HCC) presents a significant unmet clinical need.
  • Activating mutations in catenin beta-1 (CTNNB1) are common in HCC but insufficient for tumor initiation.
  • Cooperation between CTNNB1 and nuclear factor erythroid 2-related factor 2 (Nrf2) signaling is identified as a key driver in HCC.

Purpose of the Study:

  • To investigate the cooperative role of CTNNB1 and Nrf2 signaling in HCC pathogenesis.
  • To assess the therapeutic potential of targeting the mammalian target of rapamycin (mTOR) pathway in CTNNB1-mutated HCC.
  • To establish a preclinical model of HCC driven by CTNNB1 and Nrf2 coactivation.

Main Methods:

  • Analysis of public HCC datasets for concomitant CTNNB1 mutations and Nrf2 activation (via NFE2L2/KEAP1 mutations or gene signature).
  • Development of a mouse model coexpressing mutant CTNNB1 and NFE2L2 to study HCC development.
  • Assessment of tumor burden reduction in preclinical HCC models treated with the mTOR inhibitor everolimus.

Main Results:

  • Approximately 9% of HCC cases exhibit concurrent CTNNB1 mutations and Nrf2 activation, often linked to NFE2L2/KEAP1 mutations.
  • Coexpression of mutant CTNNB1 and mutant NFE2L2 induced HCC development and mortality in mice within 12-14 weeks.
  • Preclinical HCCs displayed molecular signatures similar to human HCC subsets, including activated Wnt/β-catenin and Nrf2 pathways.
  • Treatment with everolimus resulted in a >50% decrease in tumor burden in NFE2L2-CTNNB1 HCC mice.

Conclusions:

  • Coactivation of CTNNB1 and Nrf2 signaling is a significant event in a subset of human HCCs.
  • The developed mouse model recapitulates key features of human HCC and demonstrates responsiveness to mTOR inhibitors.
  • This study provides crucial biological insights and highlights therapeutic implications for targeting the mTOR pathway in specific HCC subtypes.

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