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Published on: June 2, 2023
Loss of Function SETD2 Mutations in Poorly Differentiated Metastases from Two Hürthle Cell Carcinomas of the Thyroid
Valeria Pecce1, Antonella Verrienti1, Luana Abballe1
1Department of Translational and Precision Medicine, "Sapienza" University of Rome, 00161 Rome, Italy.
Abstract:
Hürthle cell carcinomas (HCC) are rare differentiated thyroid cancers that display low avidity for radioactive iodine and respond poorly to kinase inhibitors. Here, using next-generation sequencing, we analyzed the mutational status of primary tissue and poorly differentiated metastatic tissue from two HCC patients. In both cases, metastatic tissues harbored a mutation of SETD2, each resulting in loss of the SRI and WW domains of SETD2, a methyltransferase that trimethylates H3K36 (H3K36me3) and also interacts with p53 to promote its stability. Functional studies of the novel p.D1890fs6* mutation (case 1) revealed significantly reduced H3K36me3 levels in SETD2-mutated tissue and primary cell cultures and decreased levels of the active form of p53. Restoration of SETD2-wildtype expression in the SETD2-mutant cells significantly reduced the expression of four well-known stemness markers (OCT-4, SOX2, IPF1, Goosecoid). These findings suggest potential roles for SETD2 loss-of-function mutations in HCC progression, possibly involving p53 destabilization and promotion of stemness. Their prevalence and potential treatment implications in thyroid cancer, especially HCC, require further study.
Insights
Mutations in the SETD2 gene were found in metastatic Hürthle cell carcinoma (HCC) tissues, leading to decreased H3K36me3 and p53 levels. This suggests SETD2 loss-of-function may drive thyroid cancer progression and stemness.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Hürthle cell carcinoma (HCC) is a rare thyroid cancer subtype.
- HCC exhibits low radioactive iodine avidity and poor response to kinase inhibitors.
Purpose of the Study:
- To investigate the mutational landscape of metastatic HCC.
- To identify genetic alterations contributing to HCC progression and stemness.
Main Methods:
- Next-generation sequencing of primary and metastatic HCC tissues.
- Functional studies analyzing H3K36me3 levels, p53 stability, and stemness markers.
Main Results:
- Metastatic HCC tissues from two patients harbored SETD2 mutations, causing loss of key functional domains.
- SETD2 mutations led to reduced H3K36me3 and active p53 levels.
- Restoration of wild-type SETD2 decreased expression of stemness markers (OCT-4, SOX2, IPF1, Goosecoid).
Conclusions:
- Loss-of-function SETD2 mutations may promote HCC progression through p53 destabilization and stemness.
- Further research is needed to explore the prevalence and therapeutic implications of SETD2 mutations in thyroid cancer.
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