Regulation of vertebrate muscle differentiation by thyroid hormone: The role of the myoD gene family
- 1 March 1995
- Vol. 17 (3) , 211-218
- https://doi.org/10.1002/bies.950170307
Abstract
Skeletal myoblasts have their origin early in embryogenesis within specific somites. Determined myoblasts are committed to a myogenic fate; however, they only differentiate and express a muscle‐specific phenotype after they have received the appropriate environmental signals. Once proliferating myoblasts enter the differentiation programme they withdraw from the cell cycle and form post‐mitotic multinucleated myofibres (myogenesis); this transformation is accompanied by muscle‐specific gene expression. Muscle development is associated with complex and diverse protein isoform transitions, generated by differential gene expression and mRNA splicing. The myofibres are in a state of dynamic adaptation in response to hormones, mechanical activity and motor innervation, which modulate differential gene expression and splicing during this functional acclimatisation. This review will focus on the profound effects of thyroid hormone on skeletal muscle, which produce alterations in gene and isoform expression, biochemical properties and morphological features that precipitate in modified contractile/mechanical characteristics. Insight into the molecular events that control these events was provided by the recent characterisation of the MyoD gene family, which encodes helix‐loop‐helix proteins; these activate muscle‐specific transcription and serve as targets for a variety of physiological stimuli. The current hypothesis on hormonal regulation of myogenesis is that thyroid hormones (1) directly regulate the myoD and contractile protein gene families, and (2) induce thyroid hormone receptor‐transcription factor interactions critical to gene expression.Keywords
This publication has 65 references indexed in Scilit:
- Vitamin D3-thyroid hormone receptor heterodimer polarity directs ligand sensitivity of transactivationNature, 1994
- The retinoic acid and retinoid X receptors are differentially expressed during myoblast differentiationEndocrinology, 1994
- Thyroid hormone receptor binds with unique properties to response elements that contain hexamer domains in an inverted palindrome arrangementEndocrinology, 1994
- Interplay between proliferation and differentiation within the myogenic lineageDevelopmental Biology, 1992
- Retinoid X receptor interacts with nuclear receptors in retinoic acid, thyroid hormone and vitamin D3 signallingNature, 1992
- Retinoid X receptor is an auxiliary protein for thyroid hormone and retinoic acid receptorsNature, 1992
- Analysis of thyroid hormone effects on myosin heavy chain gene expression in cardiac and soleus muscles using a novel dot-blot mRNA assayBiochemical and Biophysical Research Communications, 1985
- Thyroidal and neural control of myosin transitions during development of rat fast and slow musclesFEBS Letters, 1983
- Active transport of triiodothyronine (T3) into isolated rat liver cellsFEBS Letters, 1978
- Uptake of thyroid hormone by isolated rat liver cellsBiochemical and Biophysical Research Communications, 1976