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Updated: Mar 14, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Targeted next-generation sequencing for TP53, RAS, BRAF, ALK and NF1 mutations in anaplastic thyroid cancer
Soeren Latteyer1, Vera Tiedje1, Katharina König2,3
1Department of Endocrinology and Metabolism, University Hospital Essen, University of Duisburg-Essen, Hufelandstraße 55, Essen, 45122, Germany.
Abstract:
Anaplastic thyroid carcinoma (ATC) is the most aggressive thyroid cancer with a median survival of 4-6 months. Identification of mutations contributing to aberrant activation of signaling cascades in ATC may provide novel opportunities for targeted therapy. Thirty-nine ATC samples were studied by next-generation sequencing (NGS) with an established gene panel. High quality readout was obtained in 30/39 ATC. Twenty-eight ATC harbored a mutation in at least one of the studied genes: TP53 (18/30), NF1 (11/30), ALK (6/30), NRAS (4/30), ATRX (3/30), BRAF (2/30), HRAS (2/30), KRAS (1/30). In 17/30 ATC (54 %) mutations were found in two or more genes. Twenty-one of the identified variants are listed in COSMIC as somatic mutations reported in other cancer entities. In three ATC samples no mutations were detected and none of the ATCs was positive for BRAFV600E. The most frequent mutations were found in TP53 (60 %), followed by NF1 (37 %). ALK mutations were detected in 20 % of ATC and were more frequent than RAS or BRAF mutations. ATRX mutations were identified in 10 % of the ATC samples. These sequencing data from 30 ATC samples demonstrate the accumulation of genetic alterations in ATC because in 90 % of samples mutations were already found in the investigated nine genes alone. Mutations were found with high prevalence in established tumor suppressor and oncogenes in ATC, such as TP53 and H/K/NRAS, but also, although less frequent, in genes that may harbor the potential for targeted treatment in a subset of ATC patients, such as ALK and NF1.
Insights
Anaplastic thyroid carcinoma (ATC) shows frequent mutations in TP53 and NF1. These genetic alterations, including ALK and NF1, may offer new targets for advanced thyroid cancer therapy.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Anaplastic thyroid carcinoma (ATC) is an aggressive cancer with limited treatment options.
- Understanding the genetic landscape of ATC is crucial for developing targeted therapies.
Purpose of the Study:
- To identify common and potentially targetable mutations in Anaplastic Thyroid Carcinoma (ATC).
- To investigate the spectrum of genetic alterations in ATC using next-generation sequencing.
Main Methods:
- Next-generation sequencing (NGS) was performed on 39 Anaplastic Thyroid Carcinoma (ATC) samples.
- An established gene panel was used to analyze mutations in tumor suppressor genes and oncogenes.
- Genetic data from 30 high-quality ATC samples were analyzed.
Main Results:
- Mutations were detected in 28 out of 30 (93%) ATC samples.
- The most frequent mutations were in TP53 (60%) and NF1 (37%).
- ALK mutations (20%) were more common than RAS or BRAF mutations, suggesting potential therapeutic targets.
Conclusions:
- Anaplastic Thyroid Carcinoma (ATC) is characterized by a high prevalence of genetic alterations, frequently involving TP53 and NF1.
- Mutations in genes like ALK and NF1 present potential targets for novel therapeutic strategies in a subset of ATC patients.
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