Integrated Bioinformatics Analysis of Master Regulators in Anaplastic Thyroid Carcinoma

Zongfu Pan1,2, Lu Li3, Qilu Fang1

  • 1Department of Pharmacy, Zhejiang Cancer Hospital, Hangzhou 310022, China.

Insights

Anaplastic thyroid carcinoma (ATC) is aggressive, with few treatment advances. Researchers identified key transcription factors (TFs) like E2F7, FOXM1, and CREB3L1 as potential master regulators for new therapeutic targets in ATC.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genomics

Background:

  • Anaplastic thyroid carcinoma (ATC) is a highly aggressive malignancy with limited therapeutic options.
  • Identifying molecular drivers of ATC progression is crucial for developing effective treatments.

Purpose of the Study:

  • To identify master regulatory transcription factors (TFs) involved in anaplastic thyroid carcinoma (ATC) progression.
  • To elucidate molecular mechanisms underlying ATC development and progression.

Main Methods:

  • Analysis of three Gene Expression Omnibus datasets (GSE33630, GSE29265, GSE65144) comparing ATC and normal thyroid tissues.
  • Identification of differentially expressed genes (DEGs), pathway enrichment analysis (KEGG), protein-protein interaction (PPI) network construction, and TF regulatory network analysis.
  • Experimental validation of key identified TFs in ATC tissues and cell lines.

Main Results:

  • 1804 differentially expressed genes (DEGs) were identified between ATC and normal thyroid tissues.
  • Enriched pathways included ECM-receptor interaction, cell cycle, and PI3K-Akt signaling.
  • Key hub genes like TOP2A, CDK1, and CCNB1 were identified, with E2F7, FOXM1, NFYB, and CREB3L1 highlighted as master regulators of specific gene modules.
  • Experimental validation confirmed significant upregulation of CREB3L1, E2F7, and FOXM1 in ATC.

Conclusions:

  • The TF regulatory network provides detailed molecular insights into ATC pathogenesis.
  • E2F7, FOXM1, CREB3L1, and NFYB are identified as potential master regulators of ATC progression.
  • These TFs represent promising molecular therapeutic targets for anaplastic thyroid carcinoma treatment.

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