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Updated: Jun 28, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
PTEN deficiency accelerates tumour progression in a mouse model of thyroid cancer
C J Guigon1, L Zhao, M C Willingham
1Laboratory of Molecular Biology, Center for Cancer Research, National Cancer Institute, Bethesda, MD, USA.
Abstract:
Inactivation and silencing of PTEN have been observed in multiple cancers, including follicular thyroid carcinoma. PTEN (phosphatase and tensin homologue deleted from chromosome 10) functions as a tumour suppressor by opposing the phosphatidylinositol 3-kinase (PI3K)/protein kinase B (AKT) signalling pathway. Despite correlative data, how deregulated PTEN signalling leads to thyroid carcinogenesis is not known. Mice harbouring a dominant-negative mutant thyroid hormone receptor beta (TRbeta(PV/PV) mice) spontaneously develop follicular thyroid carcinoma and distant metastases similar to human cancer. To elucidate the role of PTEN in thyroid carcinogenesis, we generated TRbeta(PV/PV) mice haploinsufficient for Pten (TRbeta(PV/PV)Pten(+/-) mouse). PTEN deficiency accelerated the progression of thyroid tumour and increased the occurrence of metastasis spread to the lung in TRbeta(PV/PV)Pten(+/-) mice, thereby significantly reducing their survival as compared with TRbeta(PV/PV)Pten(+/+) mice. AKT activation was further increased by two-fold in TRbeta(PV/PV)Pten(+/-) mice thyroids, leading to increased activity of the downstream mammalian target of rapamycin (mTOR)-p70S6K signalling and decreased activity of the forkhead family member FOXO3a. Consistently, cyclin D1 expression was increased. Apoptosis was decreased as indicated by increased expression of nuclear factor-kappaB (NF-kappaB) and decreased caspase-3 activity in the thyroids of TRbeta(PV/PV)Pten(+/-) mice. Our results indicate that PTEN deficiency resulted in increased cell proliferation and survival in the thyroids of TRbeta(PV/PV)Pten(+/-) mice. Altogether, our study provides direct evidence to indicate that in vivo, PTEN is a critical regulator in the follicular thyroid cancer progression and invasiveness.
Insights
PTEN deficiency accelerates follicular thyroid cancer progression and metastasis in mice. Loss of PTEN increases cell proliferation and survival, highlighting its critical role in thyroid cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- PTEN (phosphatase and tensin homologue deleted from chromosome 10) is a tumor suppressor.
- PTEN inactivation is observed in follicular thyroid carcinoma.
- The role of PTEN in thyroid carcinogenesis is not fully understood.
Purpose of the Study:
- To investigate the role of PTEN in follicular thyroid cancer progression and metastasis.
- To elucidate the mechanisms by which PTEN deficiency impacts thyroid carcinogenesis in vivo.
Main Methods:
- Generated TRbeta(PV/PV) mice haploinsufficient for Pten (TRbeta(PV/PV)Pten(+/-) mice).
- Compared tumor progression, metastasis, survival, and molecular signaling pathways between TRbeta(PV/PV)Pten(+/-) and TRbeta(PV/PV)Pten(+/+) mice.
- Assessed AKT, mTOR-p70S6K, FOXO3a, cyclin D1, NF-kappaB, and caspase-3 activity.
Main Results:
- PTEN deficiency accelerated thyroid tumor progression and lung metastasis in TRbeta(PV/PV)Pten(+/-) mice.
- Increased AKT activation, mTOR-p70S6K signaling, and cyclin D1 expression.
- Decreased FOXO3a activity, apoptosis (indicated by NF-kappaB and caspase-3 activity).
- Reduced survival in TRbeta(PV/PV)Pten(+/-) mice compared to controls.
Conclusions:
- PTEN deficiency promotes cell proliferation and survival in follicular thyroid cancer.
- PTEN is a critical regulator of follicular thyroid cancer progression and invasiveness in vivo.
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