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Author Spotlight: In Vivo Assessment of Thyroid Hormone Disruption Using the THAI Mouse Model
Published on: October 6, 2023
Overlapping nongenomic and genomic actions of thyroid hormone and steroids
Stephen R Hammes1, Paul J Davis2
1Division of Endocrinology, Department of Medicine, University of Rochester School of Medicine, Rochester, NY, USA.
Abstract:
The genomic actions of thyroid hormone and steroids depend upon primary interactions of the hormones with their specific nuclear receptor proteins. Formation of nuclear co-activator or co-repressor complexes involving the liganded receptors subsequently result in transcriptional events-either activation or suppression-at genes that are specific targets of thyroid hormone or steroids. Nongenomic actions of thyroid hormone and steroids are in contrast initiated at binding sites on the plasma membrane or in cytoplasm or organelles and do not primarily require formation of intranuclear receptor protein-hormone complexes. Importantly, hormonal actions that begin nongenomically outside the nucleus often culminate in changes in nuclear transcriptional events that are regulated by both traditional intranuclear receptors as well as other nuclear transcription factors. In the case of thyroid hormone, the extranuclear receptor can be the classical "nuclear" thyroid receptor (TR), a TR isoform, or integrin αvβ3. In the case of steroid hormones, the membrane receptor is usually, but not always, the classical "nuclear" steroid receptor. This concept defines the paradigm of overlapping nongenomic and genomic hormone mechanisms of action. Here we review some examples of how extranuclear signaling by thyroid hormone and by estrogens and androgens modulates intranuclear hormone signaling to regulate a number of vital biological processes both in normal physiology and in cancer progression. We also point out that nongenomic actions of thyroid hormone may mimic effects of estrogen in certain tumors.
Insights
Thyroid hormone and steroid hormones have genomic and nongenomic actions. Nongenomic signaling outside the nucleus influences nuclear gene transcription, impacting biological processes and cancer progression.
Area of Science:
- Endocrinology
- Molecular Biology
- Cancer Biology
Background:
- Genomic actions of thyroid hormone and steroids involve nuclear receptors and transcriptional regulation.
- Nongenomic actions initiate outside the nucleus, not requiring intranuclear receptor complexes.
- Extranuclear signaling can influence nuclear events, bridging genomic and nongenomic pathways.
Purpose of the Study:
- To review examples of extranuclear signaling by thyroid hormone and steroid hormones.
- To illustrate how this signaling modulates intranuclear pathways.
- To highlight implications in normal physiology and cancer.
Main Methods:
- Review of existing literature on hormone signaling pathways.
- Analysis of extranuclear and intranuclear mechanisms of thyroid hormone and steroid action.
- Examination of hormone effects in physiological and pathological contexts, including cancer.
Main Results:
- Hormonal actions initiated extranuclearly can converge on nuclear transcriptional regulation.
- Thyroid hormone receptors (TRs) and integrin αvβ3 act as extranuclear receptors for thyroid hormone.
- Steroid hormones also utilize membrane receptors, often classical nuclear receptors.
- Nongenomic thyroid hormone actions may mimic estrogen effects in tumors.
Conclusions:
- A paradigm of overlapping nongenomic and genomic hormone mechanisms is established.
- Extranuclear hormone signaling plays a crucial role in regulating vital biological processes.
- Understanding these dual mechanisms is vital for normal physiology and cancer research.
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