Proto-oncogene PBF/PTTG1IP regulates thyroid cell growth and represses radioiodide treatment Journal Article


Authors: Read, M. L.; Lewy, G. D.; Fong, J. C. W.; Sharma, N.; Seed, R. I.; Smith, V. E.; Gentilin, E.; Warfield, A.; Eggo, M. C.; Knauf, J. A.; Leadbeater, W. E.; Watkinson, J. C.; Franklyn, J. A.; Boelaert, K.; McCabe, C. J.
Article Title: Proto-oncogene PBF/PTTG1IP regulates thyroid cell growth and represses radioiodide treatment
Abstract: Pituitary tumor transforming gene (PTTG)-binding factor (PBF or PTTG1IP) is a little characterized protooncogene that has been implicated in the etiology of breast and thyroid tumors. In this study, we created a murine transgenic model to target PBF expression to the thyroid gland (PBF-Tg mice) and found that these mice exhibited normal thyroid function, but a striking enlargement of the thyroid gland associated with hyperplastic and macrofollicular lesions. Expression of the sodium iodide symporter (NIS), a gene essential to the radioiodine ablation of thyroid hyperplasia, neoplasia, and metastasis, was also potently inhibited in PBF-Tg mice. Critically, iodide uptake was repressed in primary thyroid cultures from PBF-Tg mice, which could be rescued by PBF depletion. PBF-Tg thyroids exhibited upregulation of Akt and the TSH receptor (TSHR), each known regulators of thyrocyte proliferation, along with upregulation of the downstream proliferative marker cyclin D1. We extended and confirmed findings from the mouse model by examining PBF expression in human multinodular goiters (MNG), a hyperproliferative thyroid disorder, where PBF and TSHR was strongly upregulated relative to normal thyroid tissue. Furthermore, we showed that depleting PBF in human primary thyrocytes was sufficient to increase radioiodine uptake. Together, our findings indicate that overexpression of PBF causes thyroid cell proliferation, macrofollicular lesions, and hyperplasia, as well as repression of the critical therapeutic route for radioiodide uptake. ©2011 AACR.
Keywords: protein kinase b; controlled study; human tissue; protein expression; human cell; nonhuman; cell proliferation; protein analysis; mouse; animals; mice; gene; proto oncogene; metastasis; cell growth; protein depletion; animal experiment; animal model; membrane proteins; transgenic mouse; mice, transgenic; gene expression regulation; radioactive iodine; iodine radioisotopes; hyperplasia; growth regulation; thyroid cancer; upregulation; thyroid gland; cyclin d1; thyroid tumor; iodine; thyroid function; goiter; thyrotropin receptor; thyroid metastasis; goiter, nodular; symporters; thyroid hyperplasia; multinodular goiter; pituitary tumor transforming gene binding factor gene; sodium iodide symporter gene; thyroid cell
Journal Title: Cancer Research
Volume: 71
Issue: 19
ISSN: 0008-5472
Publisher: American Association for Cancer Research  
Date Published: 2011-10-01
Start Page: 6153
End Page: 6164
Language: English
DOI: 10.1158/0008-5472.can-11-0720
PROVIDER: scopus
PMCID: PMC3184940
PUBMED: 21844185
DOI/URL:
Notes: --- - "Export Date: 2 November 2011" - "CODEN: CNREA" - "Source: Scopus"
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  1. Jeffrey A Knauf
    61 Knauf