Literature DB >> 12677005

A thyrotoxic skeletal phenotype of advanced bone formation in mice with resistance to thyroid hormone.

Patrick J O'Shea1, Clare B Harvey, Hideyo Suzuki, Masahiro Kaneshige, Kumiko Kaneshige, Sheue-Yann Cheng, Graham R Williams.   

Abstract

Thyroid hormone (T3) regulates bone turnover and mineralization in adults and is essential for skeletal development during childhood. Hyperthyroidism is an established risk factor for osteoporosis. Nevertheless, T3 actions in bone remain poorly understood. Patients with resistance to thyroid hormone, due to mutations of the T3-receptor beta (TRbeta) gene, display variable phenotypic abnormalities, particularly in the skeleton. To investigate the actions of T3 during bone development, we characterized the skeleton in TRbetaPV mutant mice. TRbetaPV mice harbor a targeted resistance to thyroid hormone mutation in TRbeta and recapitulate the human condition. A severe phenotype, which includes shortened body length, was evident in homozygous TRbetaPV/PV animals. Accelerated growth in utero was associated with advanced endochondral and intramembranous ossification. Advanced bone formation resulted in postnatal growth retardation, premature quiescence of the growth plates, and shortened bone length, together with increased bone mineralization and craniosynostosis. In situ hybridization demonstrated increased expression of fibroblast growth factor receptor-1, a T3-regulated gene in bone, in TRbetaPV/PV perichondrium, growth plate chondrocytes, and osteoblasts. Thus, the skeleton in TRbetaPV/PV mice is thyrotoxic and displays phenotypic features typical of juvenile hyperthyroidism.

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Year:  2003        PMID: 12677005     DOI: 10.1210/me.2002-0296

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  32 in total

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Review 8.  Achondroplasia: Development, pathogenesis, and therapy.

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Review 9.  Molecular aspects of thyroid hormone actions.

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Journal:  Bone       Date:  2008-04-04       Impact factor: 4.398

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