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甲状腺球蛋白基因中的错义突变G2320R导致WIC-rdw大鼠出现非甲状腺肿性先天性原发性甲状腺功能减退症。

A missense mutation G2320R in the thyroglobulin gene causes non-goitrous congenital primary hypothyroidism in the WIC-rdw rat.

作者信息

Kim P S, Ding M, Menon S, Jung C G, Cheng J M, Miyamoto T, Li B, Furudate S, Agui T

机构信息

Department of Medicine, University of Cincinnati and Veterans Affairs Medical Center, Ohio 45267, USA.

出版信息

Mol Endocrinol. 2000 Dec;14(12):1944-53. doi: 10.1210/mend.14.12.0571.

Abstract

A convincing line of evidence is being developed that the congenital nongoitrous hypothyroidism and dwarfism observed in the WIC-rdw rat may indeed be caused by a primary defect in thyroid hormonogenesis. In support of this hypothesis, several recent reports have shown the presence of elevated molecular chaperone levels in the WIC-rdw thyrocytes, the endoplasmic reticulum of which was markedly dilated, suggesting a defect in intracellular protein transport. Here the studies were undertaken to identify the precise molecular defect in the WIC-rdw rat. First, the genetic linkage analysis revealed that the rdw locus was on rat chromosome 7 and was identical to the thyroglobulin (Tg) gene locus. Moreover, the Tg protein level was reduced in the WIC-rdw thyroid despite a similar level of the Tg gene transcripts that were indistinguishable in their size from the normal. Next, the complete sequencing of the rdw and the normal rat Tg cDNAs revealed a single nucleotide change, G6958C, resulting in a G2320R missense mutation in a highly conserved region of the Tg molecule. Finally, transient expression of the intact Tg cDNA containing the rdw mutation in the COS-7 cells showed no detectable Tg in the secreted media, indicating a severe defect in the export of the mutant Tg. Together, our observations suggest that a missense mutation, G2320R, in the Tg gene is responsible for the rdw mutation in the WIC-rdw rat.

摘要

一系列有说服力的证据正在形成,表明在WIC-rdw大鼠中观察到的先天性非甲状腺肿性甲状腺功能减退症和侏儒症可能确实是由甲状腺激素生成的原发性缺陷引起的。支持这一假设的是,最近的几份报告显示,WIC-rdw甲状腺细胞中分子伴侣水平升高,其内质网明显扩张,提示细胞内蛋白质转运存在缺陷。在此开展了相关研究,以确定WIC-rdw大鼠中确切的分子缺陷。首先,遗传连锁分析显示,rdw基因座位于大鼠7号染色体上,与甲状腺球蛋白(Tg)基因座相同。此外,尽管WIC-rdw甲状腺中Tg基因转录本水平与正常水平相似,且大小无法区分,但Tg蛋白水平却降低了。接下来,对rdw和正常大鼠Tg cDNA进行全序列分析,发现了一个单核苷酸变化,即G6958C,导致Tg分子高度保守区域出现G2320R错义突变。最后,在COS-7细胞中瞬时表达含有rdw突变的完整Tg cDNA,结果显示分泌培养基中未检测到Tg,表明突变Tg的分泌存在严重缺陷。综上所述,我们的观察结果表明,Tg基因中的一个错义突变G2320R导致了WIC-rdw大鼠中的rdw突变。

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