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A Nonpump Function of Sodium Iodide Symporter in Thyroid Cancer via Cross-talk with PTEN Signaling
Fang Feng1,2, Lamis Yehia1, Ying Ni3
1Genomic Medicine Institute, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio.
Abstract:
The sodium iodide symporter (NIS) is a classical iodide pump typically localized within the cell plasma membrane in thyroid cells, where NIS expression is believed to ensure success of mainstay radioiodide therapy in thyroid cancers. Although radioiodide uptake is generally reduced in thyroid cancer tissue, intracellular nonmembranous NIS has been reported to increase, suggesting that NIS serves a pump-independent function. Thyroid cancer is one of the major component cancers of Cowden syndrome, a subset of which is caused by germline mutations in PTEN In this study, we explored the noncanonical tumorigenic role of NIS in thyroid cancer cells in relation to PTEN signaling. PTEN knockdown in thyroid cancer cell lines stabilized intracellular NIS protein by promoting an interaction with NIS-LARG (leukemia-associated RhoA guanine exchange factor). Increased protein levels of cytoplasmic NIS enhanced RhoA activation and resulted in a promigration tumorigenic phenotype. Inhibition of NIS glycosylation through activation of the PI3K/AKT/mTOR signaling pathway contributed to mislocalization of NIS in the cytoplasm, facilitating its nonpump tumorigenic function through an interaction with LARG, which predominantly localized in the cytoplasm. Moreover, PTEN or PI3K/AKT/mTOR signaling could affect DPAGT1, a glycosylating enzyme involved in the initial step of N-linked glycosylation, to inhibit glycosylation of NIS. In summary, our results elucidate a pump-independent, protumorigenic role for NIS in thyroid cancer via its cross-talk with PTEN signaling.Significance: A novel pump-independent protumorigenic role of nonmembranous NIS challenges the presumption that radioiodine treatment of thyroid cancer is ineffective when transmembrane NIS is not expressed. Cancer Res; 78(21); 6121-33. ©2018 AACR.
Insights
The sodium iodide symporter (NIS) has a non-canonical, tumor-promoting role in thyroid cancer, independent of its pumping function. This discovery challenges assumptions about radioiodine therapy effectiveness when transmembrane NIS is absent.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- The sodium iodide symporter (NIS) is crucial for radioiodine therapy in thyroid cancer, typically functioning as an iodide pump in the plasma membrane.
- Reduced radioiodine uptake in thyroid cancer is often accompanied by increased intracellular NIS, suggesting non-pump roles.
- Cowden syndrome, linked to PTEN mutations, includes thyroid cancer, hinting at connections between NIS and tumor suppressors.
Purpose of the Study:
- To investigate the noncanonical, tumorigenic function of NIS in thyroid cancer cells.
- To explore the relationship between NIS and PTEN signaling in thyroid cancer pathogenesis.
- To elucidate the mechanisms underlying NIS's protumorigenic activities.
Main Methods:
- Utilized thyroid cancer cell lines with PTEN knockdown.
- Investigated protein interactions, including NIS and LARG (leukemia-associated RhoA guanine exchange factor).
- Analyzed the role of PI3K/AKT/mTOR signaling and DPAGT1 in NIS glycosylation and localization.
Main Results:
- PTEN knockdown stabilized intracellular NIS by promoting interaction with LARG.
- Increased cytoplasmic NIS enhanced RhoA activation, leading to a promigration phenotype.
- Inhibition of NIS glycosylation via PI3K/AKT/mTOR signaling caused NIS mislocalization and facilitated its interaction with LARG.
Conclusions:
- NIS plays a pump-independent, protumorigenic role in thyroid cancer through its interplay with PTEN signaling.
- This finding suggests NIS's nonmembranous form contributes to tumorigenesis, independent of iodide transport.
- The study highlights a novel mechanism where NIS, PTEN, and LARG signaling pathways converge to promote thyroid cancer progression.
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