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Published on: August 23, 2019
Differential roles of RET isoforms in medullary and papillary thyroid carcinomas
Eric Y Lian1,2, Sarah M Maritan1,2, Jessica G Cockburn1,2
1Division of Cancer Biology and GeneticsCancer Research Institute, Queen's University, Kingston, Ontario, Canada.
Abstract:
The RET receptor tyrosine kinase mediates cell proliferation, survival and migration in embryogenesis and is implicated in the transformation and tumour progression in multiple cancers. RET is frequently mutated and constitutively activated in familial and sporadic thyroid carcinomas. As a result of alternative splicing, RET is expressed as two protein isoforms, RET9 and RET51, which differ in their unique C-terminal amino acids. These isoforms have distinct intracellular trafficking and associated signalling complexes, but functional differences are not well defined. We used shRNA-mediated knockdown (KD) of individual RET isoforms or of total RET to evaluate their functional contributions in thyroid carcinoma cells. We showed that RET is required for cell survival in medullary (MTC) but not papillary thyroid carcinoma (PTC) cells. In PTC cells, RET depletion reduced cell migration and induced a flattened epithelial-like morphology. RET KD decreased the expression of mesenchymal markers and matrix metalloproteinases and reduced anoikis resistance and invasive potential. Further, we showed that RET51 depletion had significantly greater effects on each of these processes than RET9 depletion in both MTC and PTC cells. Finally, we showed that expression of RET, particularly RET51, was correlated with malignancy in a panel of human thyroid tumour tissues. Together, our data show that RET expression promotes a more mesenchymal phenotype with reduced cell-cell adhesion and increased invasiveness in PTC cell models, but is more important for tumour cell survival, proliferation and anoikis resistance in MTC models. Our data suggest that the RET51 isoform plays a more prominent role in mediating these processes compared to RET9.
Insights
The RET receptor tyrosine kinase is crucial for thyroid cancer cell survival and migration. The RET51 isoform significantly impacts these processes more than RET9, influencing tumor malignancy.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The RET receptor tyrosine kinase (RTK) plays a role in embryogenesis and is implicated in cancer progression.
- RET is frequently mutated and activated in thyroid carcinomas.
- RET exists as two isoforms, RET9 and RET51, with distinct functions that are not well understood.
Purpose of the Study:
- To investigate the functional roles of RET isoforms (RET9 and RET51) in thyroid carcinoma.
- To determine the differential contributions of RET isoforms to cancer cell behavior.
Main Methods:
- Utilized shRNA-mediated knockdown (KD) to deplete individual RET isoforms or total RET in thyroid carcinoma cells.
- Assessed effects on cell survival, migration, morphology, mesenchymal markers, matrix metalloproteinases, anoikis resistance, and invasiveness.
- Correlated RET expression with malignancy in human thyroid tumor tissues.
Main Results:
- RET is essential for medullary thyroid carcinoma (MTC) cell survival but not papillary thyroid carcinoma (PTC) cells.
- In PTC cells, RET depletion reduced migration, induced epithelial morphology, decreased mesenchymal markers, and lowered invasiveness.
- RET51 depletion had a greater impact on these processes than RET9 depletion in both MTC and PTC cells.
- RET expression, especially RET51, correlated with increased malignancy in human thyroid tumors.
Conclusions:
- RET signaling promotes a mesenchymal phenotype and invasiveness in PTC, while supporting survival and proliferation in MTC.
- The RET51 isoform plays a more significant role than RET9 in mediating these oncogenic functions.
- RET isoform-specific functions have implications for understanding thyroid carcinoma pathogenesis and potential therapeutic strategies.
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