SBP1 promotes tumorigenesis of thyroid cancer through TXN/NIS pathway

Abstract Background As the tissue with the highest selenium content in the body, the occurrence and development of thyroid cancer are closely related to selenium and selenoproteins. Selenium-binding protein 1 (SBP1) has been repeatedly implicated in several cancers, but its role and molecular mechan...

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出版年:Molecular Medicine
主要な著者: Jiancang Ma, Xin Huang, Jinkai Xu, Zongyu Li, Jingyue Lai, Yawei Shen, Jun Zhao, Xuejun Sun, Lieting Ma
フォーマット: 論文
言語:英語
出版事項: BMC 2023-09-01
主題:
オンライン・アクセス:https://doi.org/10.1186/s10020-023-00700-y
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author Jiancang Ma
Xin Huang
Jinkai Xu
Zongyu Li
Jingyue Lai
Yawei Shen
Jun Zhao
Xuejun Sun
Lieting Ma
author_facet Jiancang Ma
Xin Huang
Jinkai Xu
Zongyu Li
Jingyue Lai
Yawei Shen
Jun Zhao
Xuejun Sun
Lieting Ma
author_sort Jiancang Ma
collection DOAJ
container_title Molecular Medicine
description Abstract Background As the tissue with the highest selenium content in the body, the occurrence and development of thyroid cancer are closely related to selenium and selenoproteins. Selenium-binding protein 1 (SBP1) has been repeatedly implicated in several cancers, but its role and molecular mechanisms in thyroid cancer remains largely undefined. Methods The expression of SBP1, sodium/iodide symporter (NIS) and thioredoxin (TXN) were analyzed in clinical samples and cell lines. Cell counting kit-8 (CCK-8) and tube formation assays were used to analyze the cell viability and tube formation of cells. Immunofluorescence was used to determine the expression of the NIS. Co-immunoprecipitation (Co-IP) assay was carried out to verify the interaction of SBP1 with TXN. The mouse xenograft experiment was performed to investigate the growth of thyroid cancer cells with SBP1 knockdown in vivo. Results SBP1 was significantly increased in human thyroid cancer tissues and cells, especially in anaplastic thyroid cancer. Overexpression of SBP1 promoted FTC-133 cell proliferation, and the culture supernatant of SBP1-overexpression FTC-133 cells promoted tube formation of human retinal microvascular endothelial cells. Knockdown of SBP1, however, inhibited cell proliferation and tube formation. Furthermore, overexpression of SBP1 inhibited cellular differentiation of differentiated thyroid cancer cell line FTC-133, as indicated by decreased expression of thyroid stimulating hormone receptors, thyroglobulin and NIS. Knockdown of SBP1, however, promoted differentiation of BHT101 cells, an anaplastic thyroid cancer cell line. Notably, TXN, a negative regulator of NIS, was found to be significantly upregulated in human thyroid cancer tissues, and it was positively regulated by SBP1. Co-IP assay implied a direct interaction of SBP1 with TXN. Additionally, TXN overexpression reversed the effect of SBP1 knockdown on BHT101 cell viability, tube formation and cell differentiation. An in vivo study found that knockdown of SBP1 promoted the expression of thyroid stimulating hormone receptors, thyroglobulin and NIS, as well as inhibited the growth and progression of thyroid cancer tumors. Conclusion SBP1 promoted tumorigenesis and dedifferentiation of thyroid cancer through positively regulating TXN.
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spelling doaj-art-545f379476ea46a88103fe2ca579204d2025-08-20T01:10:37ZengBMCMolecular Medicine1528-36582023-09-0129111210.1186/s10020-023-00700-ySBP1 promotes tumorigenesis of thyroid cancer through TXN/NIS pathwayJiancang Ma0Xin Huang1Jinkai Xu2Zongyu Li3Jingyue Lai4Yawei Shen5Jun Zhao6Xuejun Sun7Lieting Ma8Department of General Surgery, The Second Affiliated Hospital of Xi’an Jiaotong UniversityDepartment of General Surgery, Xi’an Central Hospital, Xi’an Jiaotong UniversityDepartment of General Surgery, The Second Affiliated Hospital of Xi’an Jiaotong UniversityDepartment of General Surgery, The Second Affiliated Hospital of Xi’an Jiaotong UniversityDepartment of General Surgery, The Second Affiliated Hospital of Xi’an Jiaotong UniversityDepartment of General Surgery, Xi’an Central Hospital, Xi’an Jiaotong UniversityDepartment of General Surgery, The Second Affiliated Hospital of Xi’an Jiaotong UniversityDepartment of General Surgery, The First Affiliated Hospital of Xi’an Jiaotong UniversityDepartment of Laboratory Medicine, The First Affiliated Hospital of Xi’an Jiaotong UniversityAbstract Background As the tissue with the highest selenium content in the body, the occurrence and development of thyroid cancer are closely related to selenium and selenoproteins. Selenium-binding protein 1 (SBP1) has been repeatedly implicated in several cancers, but its role and molecular mechanisms in thyroid cancer remains largely undefined. Methods The expression of SBP1, sodium/iodide symporter (NIS) and thioredoxin (TXN) were analyzed in clinical samples and cell lines. Cell counting kit-8 (CCK-8) and tube formation assays were used to analyze the cell viability and tube formation of cells. Immunofluorescence was used to determine the expression of the NIS. Co-immunoprecipitation (Co-IP) assay was carried out to verify the interaction of SBP1 with TXN. The mouse xenograft experiment was performed to investigate the growth of thyroid cancer cells with SBP1 knockdown in vivo. Results SBP1 was significantly increased in human thyroid cancer tissues and cells, especially in anaplastic thyroid cancer. Overexpression of SBP1 promoted FTC-133 cell proliferation, and the culture supernatant of SBP1-overexpression FTC-133 cells promoted tube formation of human retinal microvascular endothelial cells. Knockdown of SBP1, however, inhibited cell proliferation and tube formation. Furthermore, overexpression of SBP1 inhibited cellular differentiation of differentiated thyroid cancer cell line FTC-133, as indicated by decreased expression of thyroid stimulating hormone receptors, thyroglobulin and NIS. Knockdown of SBP1, however, promoted differentiation of BHT101 cells, an anaplastic thyroid cancer cell line. Notably, TXN, a negative regulator of NIS, was found to be significantly upregulated in human thyroid cancer tissues, and it was positively regulated by SBP1. Co-IP assay implied a direct interaction of SBP1 with TXN. Additionally, TXN overexpression reversed the effect of SBP1 knockdown on BHT101 cell viability, tube formation and cell differentiation. An in vivo study found that knockdown of SBP1 promoted the expression of thyroid stimulating hormone receptors, thyroglobulin and NIS, as well as inhibited the growth and progression of thyroid cancer tumors. Conclusion SBP1 promoted tumorigenesis and dedifferentiation of thyroid cancer through positively regulating TXN.https://doi.org/10.1186/s10020-023-00700-yThyroid cancerSelenium-binding protein1ThioredoxinDifferentiationSodium/iodide symporter
spellingShingle Jiancang Ma
Xin Huang
Jinkai Xu
Zongyu Li
Jingyue Lai
Yawei Shen
Jun Zhao
Xuejun Sun
Lieting Ma
SBP1 promotes tumorigenesis of thyroid cancer through TXN/NIS pathway
Thyroid cancer
Selenium-binding protein1
Thioredoxin
Differentiation
Sodium/iodide symporter
title SBP1 promotes tumorigenesis of thyroid cancer through TXN/NIS pathway
title_full SBP1 promotes tumorigenesis of thyroid cancer through TXN/NIS pathway
title_fullStr SBP1 promotes tumorigenesis of thyroid cancer through TXN/NIS pathway
title_full_unstemmed SBP1 promotes tumorigenesis of thyroid cancer through TXN/NIS pathway
title_short SBP1 promotes tumorigenesis of thyroid cancer through TXN/NIS pathway
title_sort sbp1 promotes tumorigenesis of thyroid cancer through txn nis pathway
topic Thyroid cancer
Selenium-binding protein1
Thioredoxin
Differentiation
Sodium/iodide symporter
url https://doi.org/10.1186/s10020-023-00700-y
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