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The localization of thyroid hormone receptor mRNAs in human bone
1Department of Medicine, University of Cambridge School of Clinical Medicine, England. eoa@liverpool.ac.uk
Abstract:
Thyroid hormones have well-documented effects on the skeleton although the mechanism of their action on bone is poorly understood. We have recently reported the presence of different thyroid hormone receptor isoforms in human bone. However, there is evidence to suggest that the expression of thyroid hormone receptor (TR) protein may not necessarily correlate with its mRNA. In this study, we used specific digoxigenin-labeled ribo probes to investigate the expression of TRalpha1, variant TRalpha2, TRbeta1, and in particular TRbeta2 mRNA in human osteophytic bone and osteoclastoma tissue in situ. The number of positive cells was expressed as the percentage of the total number of cells of the same phenotype. In osteophytes, at sites of endochondral ossification, TRalpha1, variant TRalpha2, TRbeta1, and TRbeta2 mRNA were widely distributed in undifferentiated, proliferating, mature and hypertrophic chondrocytes. At sites of bone remodeling, TRalpha1 mRNA was expressed in the majority (> 90%) of osteoblasts. TRbeta1 and the variant TR-alpha2 mRNA were moderately expressed in approximately 75% of cells with only a few osteoblasts (< 25%) expressing TRbeta2 mRNA. All the TR transcripts were highly expressed in multinucleated osteoclasts in osteoclastoma tissue. The distribution of TR mRNAs was similar to TR receptor protein expression (as we have previously reported) in both osteophytic bone and osteoclastoma tissue except TRalpha1 mRNA that was highly expressed in osteoclasts and in undifferentiated, proliferating, mature, and hypertrophic chondrocytes in contrast to its receptor protein expression. This study highlights the importance of studying both TR mRNA and receptor proteins in triiodothyronine (T3) responsive tissues. This is also the first demonstration of the presence of TRbeta2 mRNA in bone. The role of TRbeta2 in mediating the actions of thyroid hormones in bone is not known and requires further investigation.
Insights
Thyroid hormone receptors (TR) mRNA, including TRbeta2, are present in human bone cells. TR mRNA distribution differs from protein expression, highlighting the need to study both for understanding thyroid hormone action in bone.
Area of Science:
- Endocrinology
- Bone Biology
- Molecular Biology
Background:
- Thyroid hormones significantly impact skeletal health, but their precise mechanisms in bone remain unclear.
- Previous research identified thyroid hormone receptor (TR) isoforms in human bone, yet mRNA and protein expression may not always align.
Purpose of the Study:
- To investigate the in situ expression of TRalpha1, TRalpha2, TRbeta1, and TRbeta2 mRNA in human osteophytic bone and osteoclastoma tissues.
- To compare the distribution of TR mRNA with previously reported TR protein expression in these bone tissues.
Main Methods:
- Utilized digoxigenin-labeled ribo probes for in situ hybridization to detect specific TR mRNA isoforms.
- Quantified positive cells as a percentage of total cells within specific phenotypes (chondrocytes, osteoblasts, osteoclasts).
- Examined tissues from human osteophytes and osteoclastomas.
Main Results:
- TRalpha1, TRalpha2, TRbeta1, and TRbeta2 mRNA were found in chondrocytes within osteophytes.
- TRalpha1 mRNA was highly expressed in osteoblasts (>90%), while TRbeta1 and TRalpha2 were moderately expressed (~75%), and TRbeta2 was low (<25%).
- All TR transcripts were highly expressed in osteoclasts within osteoclastoma tissue, with TRalpha1 mRNA showing high expression in chondrocytes as well.
Conclusions:
- This study is the first to demonstrate the presence of TRbeta2 mRNA in bone tissue.
- Observed discrepancies between TR mRNA and protein distribution (e.g., TRalpha1 in osteoclasts) emphasize the importance of analyzing both.
- Further research is needed to elucidate the role of TRbeta2 in mediating thyroid hormone actions within the bone microenvironment.