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甲状腺球蛋白基因的新见解:七种与甲状腺肿和甲状腺功能减退症相关的新突变的分子分析。

New insights into thyroglobulin gene: molecular analysis of seven novel mutations associated with goiter and hypothyroidism.

机构信息

Laboratorio de Genética y Biología Molecular, Instituto de Inmunología, Genética y Metabolismo, Hospital de Clínicas José de San Martín, C1120AAR Buenos Aires, Argentina.

出版信息

Mol Cell Endocrinol. 2013 Jan 30;365(2):277-91. doi: 10.1016/j.mce.2012.11.002. Epub 2012 Nov 16.

Abstract

The thyroglobulin (TG) gene is organized in 48 exons, spanning over 270 kb on human chromosome 8q24. Up to now, 62 inactivating mutations in the TG gene have been identified in patients with congenital goiter and endemic or non-endemic simple goiter. The purpose of the present study was to identify and characterize new mutations in the TG gene. We report 13 patients from seven unrelated families with goiter, hypothyroidism and low levels of serum TG. All patients underwent clinical, biochemical and imaging evaluation. Single-strand conformation polymorphism (SSCP) analysis, endonuclease restriction analysis, sequencing of DNA, genotyping, population screening, and bioinformatics studies were performed. Molecular analyses revealed seven novel inactivating TG mutations: c.378C>A [p.Y107X], c.2359C>T [p.R768X], c.2736delG [p.R893fsX946], c.3842G>A [p.C1262Y], c.5466delA [p.K1803fsX1833], c.6000C>G [p.C1981W] and c.6605C>G [p.P2183R] and three previously reported mutations: c.886C>T [p.R277X], c.6701C>A [p.A2215D] and c.7006C>T [p.R2317X]. Six patients from two families were homozygous for p.R277X mutation, four were compound heterozygous mutations (p.Y107X/p.C1262Y, p.R893fsX946/p.A2215D, p.K1803fsX1832/p.R2317X), one carried three identified mutations (p.R277X/p.C1981W-p.P2183R) together with a hypothetical micro deletion and the remaining two siblings from another family with typical phenotype had a single p.R768X mutated allele. In conclusion, our results confirm the genetic heterogeneity of TG defects and the pathophysiological importance of altered TG folding as a consequency of truncated TG proteins and missense mutations located in ACHE-like domain or that replace cysteine.

摘要

甲状腺球蛋白(TG)基因组织在 48 个外显子中,跨越人类染色体 8q24 上的 270 kb。迄今为止,在先天性甲状腺肿和地方性或非地方性单纯性甲状腺肿患者中已鉴定出 62 种 TG 基因失活突变。本研究的目的是鉴定和表征 TG 基因中的新突变。我们报告了来自七个无关家庭的 13 名患有甲状腺肿、甲状腺功能减退和血清 TG 水平低的患者。所有患者均接受了临床、生化和影像学评估。进行了单链构象多态性(SSCP)分析、内切酶限制分析、DNA 测序、基因分型、人群筛查和生物信息学研究。分子分析显示了 7 种新的失活 TG 突变:c.378C>A [p.Y107X]、c.2359C>T [p.R768X]、c.2736delG [p.R893fsX946]、c.3842G>A [p.C1262Y]、c.5466delA [p.K1803fsX1833]、c.6000C>G [p.C1981W]和 c.6605C>G [p.P2183R],以及 3 种先前报道的突变:c.886C>T [p.R277X]、c.6701C>A [p.A2215D]和 c.7006C>T [p.R2317X]。两个家庭的 6 名患者为 p.R277X 突变纯合子,4 名患者为复合杂合子突变(p.Y107X/p.C1262Y、p.R893fsX946/p.A2215D、p.K1803fsX1832/p.R2317X),一名患者携带三种已鉴定的突变(p.R277X/p.C1981W-p.P2183R)和一个假设的微缺失,另一个来自另一个具有典型表型的家庭的两个兄弟姐妹携带单个 p.R768X 突变等位基因。总之,我们的结果证实了 TG 缺陷的遗传异质性和 TG 折叠改变的病理生理学重要性,这种改变是由于截断的 TG 蛋白和位于 ACHE 样结构域或取代半胱氨酸的错义突变所致。

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