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DUOX2突变与伴有异位甲状腺的先天性甲状腺功能减退症相关。

DUOX2 Mutations Are Associated With Congenital Hypothyroidism With Ectopic Thyroid Gland.

作者信息

Kizys Marina M L, Louzada Ruy A, Mitne-Neto Miguel, Jara Jessica R, Furuzawa Gilberto K, de Carvalho Denise P, Dias-da-Silva Magnus R, Nesi-França Suzana, Dupuy Corinne, Maciel Rui M B

机构信息

Laboratory of Molecular and Translational Endocrinology, Department of Medicine, Universidade Federal de São Paulo, São Paulo 04039-032, Brazil.

UMR 8200 CNRS, Villejuif, 94800, France.

出版信息

J Clin Endocrinol Metab. 2017 Nov 1;102(11):4060-4071. doi: 10.1210/jc.2017-00832.

Abstract

CONTEXT

Thyroid dysgenesis (TD) is the leading cause of congenital hypothyroidism (CH). The etiology of TD remains unknown in ∼90% of cases, the most common form being thyroid ectopia (TE) (48% to 61%).

OBJECTIVE

To search for candidate genes in hypothyroid children with TE.

DESIGN, SETTING, AND PARTICIPANTS: We followed a cohort of 268 children with TD and performed whole-exome sequencing (WES) in three children with CH with TE (CHTE) and compared them with 18 thyroid-healthy controls. We then screened an additional 41 children with CHTE by Sanger sequencing and correlated the WES and Sanger molecular findings with in vitro functional analysis.

MAIN OUTCOME MEASURES

Genotyping, mutation prediction analysis, and in vitro functional analysis.

RESULTS

We identified seven variants in the DUOX2 gene, namely G201E, L264CfsX57, P609S, M650T, E810X, M822V, and E1017G, and eight known variations. All children carrying DUOX2 variations had high thyroid-stimulating hormone levels at neonatal diagnosis. All mutations were localized in the N-terminal segment, and three of them led to effects on cell surface targeting and reactive oxygen species generation. The DUOX2 mutants also altered the interaction with the maturation factor DUOXA2 and the formation of a stable DUOX2/DUOXA2 complex at the cell surface, thereby impairing functional enzymatic activity. We observed no mutations in the classic genes related to TD or in the DUOX1 gene.

CONCLUSION

Our findings suggest that, in addition to thyroid hormonogenesis, the DUOX2 N-terminal domain may play a role in thyroid development.

摘要

背景

甲状腺发育不全(TD)是先天性甲状腺功能减退症(CH)的主要病因。约90%的TD病例病因不明,最常见的形式是甲状腺异位(TE)(48%至61%)。

目的

在患有TE的甲状腺功能减退儿童中寻找候选基因。

设计、地点和参与者:我们追踪了一组268例TD儿童,并对3例患有TE的CH儿童(CHTE)进行了全外显子组测序(WES),并将他们与18名甲状腺健康对照进行比较。然后,我们通过桑格测序对另外41例CHTE儿童进行了筛查,并将WES和桑格分子结果与体外功能分析相关联。

主要观察指标

基因分型、突变预测分析和体外功能分析。

结果

我们在DUOX2基因中鉴定出7个变异,即G201E、L264CfsX57、P609S、M650T、E810X、M822V和E1017G,以及8个已知变异。所有携带DUOX2变异的儿童在新生儿诊断时促甲状腺激素水平都很高。所有突变都位于N端片段,其中3个导致对细胞表面靶向和活性氧生成的影响。DUOX2突变体还改变了与成熟因子DUOXA2的相互作用以及细胞表面稳定的DUOX2/DUOXA2复合物的形成,从而损害了功能酶活性。我们在与TD相关的经典基因或DUOX1基因中未观察到突变。

结论

我们的研究结果表明,除了甲状腺激素生成外,DUOX2 N端结构域可能在甲状腺发育中起作用。

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