Literature DB >> 32584192

Nongenomic Actions of Thyroid Hormone: The Integrin Component.

Paul J Davis1, Shaker A Mousa1, Hung-Yun Lin1.   

Abstract

The extracellular domain of plasma membrane integrin αvβ3 contains a cell surface receptor for thyroid hormone analogues. The receptor is largely expressed and activated in tumor cells and rapidly dividing endothelial cells. The principal ligand for this receptor is l-thyroxine (T4), usually regarded only as a prohormone for 3,5,3'-triiodo-l-thyronine (T3), the hormone analogue that expresses thyroid hormone in the cell nucleus via nuclear receptors that are unrelated structurally to integrin αvβ3. At the integrin receptor for thyroid hormone, T4 regulates cancer and endothelial cell division, tumor cell defense pathways (such as anti-apoptosis), and angiogenesis and supports metastasis, radioresistance, and chemoresistance. The molecular mechanisms involve signal transduction via mitogen-activated protein kinase and phosphatidylinositol 3-kinase, differential expression of multiple genes related to the listed cell processes, and regulation of activities of other cell surface proteins, such as vascular growth factor receptors. Tetraiodothyroacetic acid (tetrac) is derived from T4 and competes with binding of T4 to the integrin. In the absence of T4, tetrac and chemically modified tetrac also have anticancer effects that culminate in altered gene transcription. Tumor xenografts are arrested by unmodified and chemically modified tetrac. The receptor requires further characterization in terms of contributions to nonmalignant cells, such as platelets and phagocytes. The integrin αvβ3 receptor for thyroid hormone offers a large panel of cellular actions that are relevant to cancer biology and that may be regulated by tetrac derivatives.

Entities:  

Keywords:  3,5,3′-triiodo-l-thyronine (T3); angiogenesis; apoptosis; cell cycle, integrin αvβ3; l-thyroxine (T4); protein trafficking; signal transduction pathways; tetraiodothyroacetic acid (tetrac)

Mesh:

Substances:

Year:  2020        PMID: 32584192     DOI: 10.1152/physrev.00038.2019

Source DB:  PubMed          Journal:  Physiol Rev        ISSN: 0031-9333            Impact factor:   46.500


  27 in total

Review 1.  The Clinical Relevance of Hypothyroidism in Patients with Solid Non-Thyroid Cancer: A Tantalizing Conundrum.

Authors:  Maria V Deligiorgi; Dimitrios T Trafalis
Journal:  J Clin Med       Date:  2022-06-14       Impact factor: 4.964

2.  Characterization of Thyroid Hormones Antivertigo Effects in a Rat Model of Excitotoxically-Induced Vestibulopathy.

Authors:  Claire M Bringuier; Bérenice Hatat; Romain Boularand; Christian Chabbert; Brahim Tighilet
Journal:  Front Neurol       Date:  2022-05-25       Impact factor: 4.086

3.  Selective Inhibition of Genomic and Non-Genomic Effects of Thyroid Hormone Regulates Muscle Cell Differentiation and Metabolic Behavior.

Authors:  Annarita Nappi; Melania Murolo; Serena Sagliocchi; Caterina Miro; Annunziata Gaetana Cicatiello; Emery Di Cicco; Rossella Di Paola; Maddalena Raia; Lucia D'Esposito; Mariano Stornaiuolo; Monica Dentice
Journal:  Int J Mol Sci       Date:  2021-07-02       Impact factor: 5.923

Review 4.  Thyroid and COVID-19: a review on pathophysiological, clinical and organizational aspects.

Authors:  G Lisco; A De Tullio; E Jirillo; V A Giagulli; G De Pergola; E Guastamacchia; V Triggiani
Journal:  J Endocrinol Invest       Date:  2021-03-25       Impact factor: 4.256

Review 5.  The Intriguing Thyroid Hormones-Lung Cancer Association as Exemplification of the Thyroid Hormones-Cancer Association: Three Decades of Evolving Research.

Authors:  Maria V Deligiorgi; Dimitrios T Trafalis
Journal:  Int J Mol Sci       Date:  2021-12-31       Impact factor: 5.923

Review 6.  Sex Dimorphic Responses of the Hypothalamus-Pituitary-Thyroid Axis to Energy Demands and Stress.

Authors:  Marco Antonio Parra-Montes de Oca; Israim Sotelo-Rivera; Angélica Gutiérrez-Mata; Jean-Louis Charli; Patricia Joseph-Bravo
Journal:  Front Endocrinol (Lausanne)       Date:  2021-10-20       Impact factor: 5.555

7.  Role of Integrin αvβ3 in Doxycycline-Induced Anti-Proliferation in Breast Cancer Cells.

Authors:  Yi-Fong Chen; Yung-Ning Yang; Hung-Ru Chu; Tung-Yung Huang; Shwu-Huey Wang; Han-Yu Chen; Zi-Lin Li; Yu-Chen S H Yang; Hung-Yun Lin; Aleck Hercbergs; Jacqueline Whang-Peng; Kuan Wang; Paul J Davis
Journal:  Front Cell Dev Biol       Date:  2022-02-14

Review 8.  Involvement of Thyroid Hormones in Brain Development and Cancer.

Authors:  Gabriella Schiera; Carlo Maria Di Liegro; Italia Di Liegro
Journal:  Cancers (Basel)       Date:  2021-05-30       Impact factor: 6.639

Review 9.  Actions of Thyroid Hormones on Thyroid Cancers.

Authors:  Shaker A Mousa; Aleck Hercbergs; Hung-Yun Lin; Kelly A Keating; Paul J Davis
Journal:  Front Endocrinol (Lausanne)       Date:  2021-06-21       Impact factor: 5.555

10.  The Role of Thyroid Hormone in the Regulation of Cerebellar Development.

Authors:  Sumiyasu Ishii; Izuki Amano; Noriyuki Koibuchi
Journal:  Endocrinol Metab (Seoul)       Date:  2021-08-09
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