首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Characterization of seven novel mutations of the c-erbA beta gene in unrelated kindreds with generalized thyroid hormone resistance. Evidence for two hot spot regions of the ligand binding domain.
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Characterization of seven novel mutations of the c-erbA beta gene in unrelated kindreds with generalized thyroid hormone resistance. Evidence for two hot spot regions of the ligand binding domain.

机译:在不相关的亲戚中具有普遍的甲状腺激素抗性的c-erbA beta基因的七个新突变的表征。配体结合域的两个热点区域的证据。

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摘要

Genetic analysis in our laboratory of families with generalized thyroid hormone resistance (GTHR) has demonstrated tight linkage with a locus, c-erbA beta, encoding a nuclear T3 receptor. Three point mutations and two deletions in this locus have previously been reported in affected individuals in unrelated families as potential molecular bases for this disorder. In the present study, we have used direct sequencing of polymerase chain reaction-amplified exons of the c-erbA beta gene to rapidly identify novel point mutations from seven previously uncharacterized kindreds with GTHR. Six single base substitutions and one single base insertion were identified and found to be clustered in two regions of exons 9 and 10 in the ligand binding domain of the receptor: in the distal ligand-binding subdomain L2 and across the juncture of the taui and dimerization subdomains. Reduction of T3-binding affinity in each of four mutations tested as well as segregation of all mutations to clinically affected individuals strongly supports the hypothesis that these changes are the cause of GTHR in these kindreds. In view of the diversity of clinical phenotypes manifested, the distinct topographic clustering of the mutations provides an invaluable genetic tool for the molecular dissection of thyroid receptor function.
机译:我们对患有广泛性甲状腺激素抵抗(GTHR)的家庭进行的实验室遗传分析表明,该基因与编码核T3受体的基因c-erbA beta紧密相关。先前已在不相关家庭的受影响个体中报道了该基因座中的三点突变和两个缺失,作为该疾病的潜在分子基础。在本研究中,我们使用了c-erbA beta基因的聚合酶链反应扩增外显子的直接测序,以从7个以前未鉴定的亲缘关系中快速鉴定出新的点突变。鉴定出六个单碱基取代和一个单碱基插入,发现它们聚集在受体配体结合结构域的外显子9和10的两个区域中:远端配体结合子结构域L2和跨taui和二聚化的结合点子域。降低了所测试的四个突变中每个突变的T3结合亲和力,以及将所有突变隔离到临床受影响的个体上,有力地支持了以下假设:这些变化是这些亲属中GTHR的原因。考虑到所表现出的临床表型的多样性,突变的独特地形聚类为甲状腺受体功能的分子解剖提供了宝贵的遗传工具。

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