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Updated: Jun 19, 2026

Quantitative Mass Spectrometric Profiling of Cancer-cell Proteomes Derived From Liquid and Solid Tumors
Published on: February 27, 2015
Genomic profiling of primary and metastatic thyroid cancers
Valdemar Máximo1,2,3, Miguel Melo1,2,4, Yingjie Zhu5
1i3S Instituto de Investigação e Inovação em Saúde, Porto, Portugal.
Abstract:
The genetic repertoire of primary thyroid cancers (TCs) is well documented, but there is a considerable lack of molecular profiling in metastatic TCs. Here, we retrieved and analyzed the molecular and clinical features of 475 primary and metastatic TCs subjected to targeted DNA sequencing, from the cBioPortal database. The cohort included primary and metastatic samples from 276 papillary thyroid carcinomas (PTCs), 5 follicular thyroid carcinomas, 22 Hürthle cell carcinomas (HCCs), 127 poorly differentiated thyroid carcinomas (PDTCs), 30 anaplastic thyroid carcinomas (ATCs) and 15 medullary thyroid carcinomas. The ATCs had the highest tumor mutational burden and the HCCs the highest fraction of the genome altered. Compared to primary PTCs, the metastases had a significantly higher frequency of genetic alterations affecting TERT (51% vs 77%, P < 0.001), CDKN2A (2% vs 10%, P < 0.01), RET (2% vs 7%, P < 0.05), CDKN2B (1% vs 6%, P < 0.05) and BCOR (0% vs 4%, P < 0.05). The distant metastases had a significantly lower frequency of BRAF (64% vs 85%, P < 0.01) and a significantly higher frequency of NRAS (13% vs 3%, P < 0.05) hotspot mutations than the lymph node metastases. Metastases from HCCs and PDTCs were found to be enriched for NF1 (29%) and TP53 (18%) biallelic alterations, respectively. The frequency of subclonal mutations in ATCs was significantly higher than in PTCs (43% vs 25%, P < 0.01) and PDTCs (43% vs 22%, P < 0.01). Metastatic TCs are enriched in clinically informative genetic alterations such as RET translocations, BRAF hotspot mutations and NF1 biallelic losses that may be explored therapeutically.
Insights
Molecular profiling of metastatic thyroid cancers (TCs) reveals significant genetic differences compared to primary tumors. Metastases show increased alterations in TERT, CDKN2A, and RET, suggesting potential therapeutic targets.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Primary thyroid cancer (TC) genetics are well-characterized.
- Limited molecular data exists for metastatic TCs.
- Understanding metastatic TC genetics is crucial for targeted therapies.
Purpose of the Study:
- To analyze and compare the molecular and clinical features of primary and metastatic TCs.
- To identify genetic alterations enriched in metastatic TCs.
- To explore potential therapeutic targets in metastatic thyroid cancer.
Main Methods:
- Retrieved and analyzed targeted DNA sequencing data from 475 primary and metastatic TCs.
- Utilized data from the cBioPortal database.
- Included various thyroid cancer subtypes: papillary, follicular, Hürthle cell, poorly differentiated, anaplastic, and medullary.
Main Results:
- Anaplastic thyroid carcinomas (ATCs) exhibited the highest tumor mutational burden; Hürthle cell carcinomas (HCCs) showed the highest fraction of the genome altered.
- Metastatic TCs showed significantly higher frequencies of TERT, CDKN2A, RET, CDKN2B, and BCOR alterations compared to primary TCs.
- Metastases are enriched in therapeutically relevant alterations like RET translocations, BRAF mutations, and NF1 biallelic losses.
Conclusions:
- Metastatic thyroid cancers possess distinct genetic profiles compared to primary tumors.
- Specific genetic alterations in metastases, such as TERT and CDKN2A mutations, are significantly increased.
- Identified genetic alterations in metastatic TCs offer promising avenues for novel therapeutic strategies.
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