Screening of nineteen unrelated families with generalized resistance to thyroid hormone for known point mutations in the thyroid hormone receptor beta gene and the detection of a new mutation.
Open Access
- 1 February 1991
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 87 (2) , 496-502
- https://doi.org/10.1172/jci115023
Abstract
Generalized resistance to thyroid hormone (GRTH) is a syndrome characterized by impaired tissue responsiveness to thyroid hormone. Two distinct point mutations in the hormone binding domain of the thyroid hormone receptor (TR) beta have recently been identified in two unrelated families with GRTH. One, Mf, involves a replacement of the normal glycine-345 for arginine in exon 7 and another, Mh, replaces the normal proline-453 for histidine in exon 8. To probe for the presence of the Mf and Mh defect in 19 unrelated families with GRTH, we applied separate polymerase chain reactions using allele-specific oligonucleotide primers containing the normal and each of the two mutant nucleotides at the 3'-position. A total of 24 affected subjects and 13 normal family members were studied. The mode of inheritance was dominant in 13 families, was unknown in 5 families, and was clearly recessive in 1 family in which only the consanguineous subjects were affected. Primers containing the substitutions specific for Mf and Mh amplified exons 7 and 8, respectively, only in affected members of each of the two index families. Primers containing the normal sequences amplified exons 7 and 8 of the TR beta gene in all subjects except affected members of one family. In this family with recessively inherited GRTH, neither exon could be amplified using any combinations of primers and DNA blot revealed absence of all coding exons. These results indicate a major deletion of the TR beta gene, including both DNA and hormone binding domains. Since heterozygous members of this family are not affected, the presence of a single normal allele is sufficient for normal function of the TR beta. These data also support the hypothesis that in the dominant mode of GRTH inheritance the presence of an abnormal TR beta interferes with the function of the normal TR beta. Distinct mutations are probably responsible for GRTH in unrelated families.Keywords
This publication has 50 references indexed in Scilit:
- Structural analysis of human thyroid hormone receptor β geneMolecular and Cellular Endocrinology, 1990
- A base mutation of the C-erbA beta thyroid hormone receptor in a kindred with generalized thyroid hormone resistance. Molecular heterogeneity in two other kindreds.Journal of Clinical Investigation, 1990
- Direct sequencing of the gene for Maryland/German familial amyloidotic polyneuropathy type II and genotyping by allele-specific enzymatic amplificationGenomics, 1989
- The Syndrome of Generalized Resistance to Thyroid Hormone (Grth)Endocrine Research, 1989
- The molecular basis of hemophilia A in manTrends in Genetics, 1988
- Alternative splicing generates messages encoding rat c-erbA proteins that do not bind thyroid hormone.Proceedings of the National Academy of Sciences, 1988
- Primer-Directed Enzymatic Amplification of DNA with a Thermostable DNA PolymeraseScience, 1988
- NON-ADENOMATOUS INAPPROPRIATE TSH HYPERSECRETION AND EUTHYROIDISM REQUIRES NO TREATMENTClinical Endocrinology, 1987
- Peripheral resistance to thyroid hormone in a family: Heterogeneity of clinical presentationThe Journal of Pediatrics, 1983
- AUGMENTATION OF PITUITARY THYROTROPHIN RESPONSE TO THYROTROPHIN RELEASING HORMONE DURING SUBPHYSIOLOGICAL TRI-IODOTHYROININE THERAPY IN HYPOTHYROIDISMClinical Endocrinology, 1979