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March 3, 20262 citationsOpen Access

AP-2 Transcription Factors as Regulators of Ferroptosis: A Family-Wide Profiling in Diverse Cancer Contexts

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DKDamian KołatPGPiotr GromekMKMateusz Kciuk

Key Points

  • The research aims to systematically analyze the connection between AP-2 transcription factors and ferroptosis across different cancer types.
  • Conducted family-wide analysis of AP-2 factors and ferroptosis across several tumor types.
  • Integrated gene expression comparisons between tumors and normal tissues.
  • Performed survival stratification and ferroptosis scoring.
  • Conducted functional analyses across different cohorts.
  • Identified consistent associations between AP-2 expression and prognosis in five tumor cohorts.
  • Highlighted genes enriched in redox- and lipid-metabolism pathways linked to cell death.
  • Pinpointed specific ferroptotic markers and AP-2-associated genes for further validation.

Abstract

Ferroptosis is an iron-dependent programmed cell death (PCD) implicated in cancer therapy response, yet its transcriptional control remains unevenly characterized and often centered on a limited subset of transcription factors (TFs) rather than systematically addressing TF families. The Activating enhancer-binding Protein-2 (AP-2) family of TFs is a plausible but understudied regulatory node linking oncogenic programs to ferroptosis, with prior research limited to AP-2α and AP-2γ, suggesting anti-ferroptotic and pro-tumorigenic roles. Thus, the present study aimed to provide a family-wide analysis of the relationships between AP-2 and ferroptosis across tumors in which this PCD type is considered biologically and clinically relevant. The research integrates ferroptosis gene modules with AP-2 targetomes, tumor–normal expression comparisons, survival stratification, ferroptosis scoring, cross-cohort functional analyses, and signaling pathway projection extending canonical ferroptosis circuits with AP-2–associated non-canonical elements. Consistent associations between AP-2 expression, prognosis, and ferroptosis score were observed in five tumor cohorts: cervical squamous cell carcinoma, glioblastoma, ovarian serous cystadenocarcinoma, pancreatic adenocarcinoma, and thyroid carcinoma. In addition, cross-cohort clustering highlighted genes enriched in redox- and lipid-metabolism programs linked to apoptosis and autophagy-dependent death. Among the candidates emerging from these analyses, ferroptotic markers (LOX, PTGS2, and NQO1) and AP-2–linked nodes such as CD36, DUOX1, EPHA2, MUC1, PTPRC, SNAI2, and TP63 warrant targeted functional and binding validation to infer whether these associations reflect direct AP-2 regulatory mechanisms. Most importantly, AP-2–centered research appears to be a valuable area for guiding studies of tumor-specific ferroptosis vulnerability or resistance.

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Cite This Study

Kołat et al. (2026) studied this question.

synapsesocial.com/papers/69a67f06f353c071a6f0addfhttps://doi.org/10.3390/ijms27052310
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