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Concurrent TSHR mutations and DIO2 T92A polymorphism result in abnormal thyroid hormone metabolism

机译:并发TSHR突变​​和DIO2 T92A多态性导致甲状腺激素代谢异常

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Deiodinase 2 (DIO2) plays an important role in thyroid hormone metabolism and its regulation. However, molecular mechanism that regulates DIO2 activity remains unclear; only mutaions in selenocysteine insertion sequence binding protein 2 and selenocysteine tranfer RNA (tRNA[Ser]Sec) are reported to result in decreased DIO2 activity. Two patients with clinical evidence of abnormal thyroid hormone metabolism were identified and found to have TSHR mutations as well as DIO2 T92A single nucleotide polymorphism (SNP). Primary-cultured fibroblasts from one patient present a high level of basal DIO2 enzymatic activity, possibly due to compensation by augmented DIO2 expression. However, this high enzymatic active state yet fails to respond to accelerating TSH. Consequently, TSHR mutations along with DIO2 T92A SNP (“double hit”) may lead to a significant reduction in DIO2 activity stimulated by TSH, and thereby may have clinical relevance in a select population of hypothyroidism patients who might benefit from a T3/T4 combination therapy.
机译:脱碘酶2(DIO2)在甲状腺激素代谢及其调节中起重要作用。但是,调节DIO2活性的分子机制仍然不清楚;据报道,唯一在硒中插入序列结合蛋白2和硒细胞素转换器RNA(TRNA [SER] SEC)的脱落导致DIO 2活性降低。鉴定了两名患有异常甲状腺激素代谢的临床患者,发现具有TSHR突变​​以及DIO2 T92A单核苷酸多态性(SNP)。来自一名患者的初级培养的成纤维细胞存在高水平的基础DIO2酶活性,可能是由于增强DIO2表达的补偿。然而,这种高酶活性状态尚未反应加速TSH。因此,TSHR突变​​与DIO2 T92A SNP(“双击”)可以导致TSH刺激的DIO2活性显着降低,从而可以在选择可能从T3 / T4组合中受益的甲状腺功能减退症患者的患者中具有临床相关性治疗。

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