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Updated: Aug 10, 2025

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Adding pieces to the puzzle of differentiated-to-anaplastic thyroid cancer evolution: the oncogene E2F7
Mila Gugnoni1, Eugenia Lorenzini1, Italo Faria do Valle2
1Laboratory of Translational Research, Azienda USL - IRCCS di Reggio Emilia, Reggio Emilia, Italy.
Abstract:
Anaplastic Thyroid Cancer (ATC) is the most aggressive and de-differentiated subtype of thyroid cancer. Many studies hypothesized that ATC derives from Differentiated Thyroid Carcinoma (DTC) through a de-differentiation process triggered by specific molecular events still largely unknown. E2F7 is an atypical member of the E2F family. Known as cell cycle inhibitor and keeper of genomic stability, in specific contexts its function is oncogenic, guiding cancer progression. We performed a meta-analysis on 279 gene expression profiles, from 8 Gene Expression Omnibus patient samples datasets, to explore the causal relationship between DTC and ATC. We defined 3 specific gene signatures describing the evolution from normal thyroid tissue to DTC and ATC and validated them in a cohort of human surgically resected ATCs collected in our Institution. We identified E2F7 as a key player in the DTC-ATC transition and showed in vitro that its down-regulation reduced ATC cells' aggressiveness features. RNA-seq and ChIP-seq profiling allowed the identification of the E2F7 specific gene program, which is mainly related to cell cycle progression and DNA repair ability. Overall, this study identified a signature describing DTC de-differentiation toward ATC subtype and unveiled an E2F7-dependent transcriptional program supporting this process.
Insights
Anaplastic Thyroid Cancer (ATC) progresses from Differentiated Thyroid Carcinoma (DTC) via a de-differentiation process. This study identifies E2F7 as a key driver of this transition, revealing a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Anaplastic Thyroid Cancer (ATC) is an aggressive subtype of thyroid cancer, hypothesized to arise from Differentiated Thyroid Carcinoma (DTC) through poorly understood molecular events.
- E2F7, typically a cell cycle inhibitor, can act oncogenically in certain cancer contexts, influencing disease progression.
Approach:
- A meta-analysis of 279 gene expression profiles from 8 datasets was conducted to investigate the relationship between DTC and ATC.
- Gene signatures were defined to map the progression from normal thyroid tissue to DTC and ATC, and subsequently validated.
- In vitro experiments and RNA-seq/ChIP-seq profiling were used to identify the E2F7-dependent gene program.
Key Points:
- A specific gene signature was identified that characterizes the de-differentiation of DTC into ATC.
- E2F7 was identified as a crucial factor in the DTC to ATC transition.
- Down-regulation of E2F7 was shown to reduce the aggressiveness of ATC cells in vitro.
Conclusions:
- The study elucidates a molecular signature associated with DTC de-differentiation towards ATC.
- An E2F7-dependent transcriptional program, involving cell cycle progression and DNA repair, supports the DTC-ATC transition.
- E2F7 emerges as a significant molecular player in anaplastic thyroid cancer progression.
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