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由影响DUOX2的NADPH氧化酶结构域的复合杂合突变引起的短暂性先天性甲状腺功能减退症。

Transient congenital hypothyroidism caused by compound heterozygous mutations affecting the NADPH-oxidase domain of DUOX2.

作者信息

Yoshizawa-Ogasawara Atsuko, Abe Kiyomi, Ogikubo Sayaka, Narumi Satoshi, Hasegawa Tomonobu, Satoh Mari

出版信息

J Pediatr Endocrinol Metab. 2016 Mar;29(3):363-71. doi: 10.1515/jpem-2014-0479.

Abstract

Here, we describe three cases of loss-of-function mutations in the nicotinamide adenine dinucleotide phosphate (NADPH)-oxidase (NOX) domain of dual oxidase 2 (DUOX2) occurring along with concurrent missense mutations in thyroid peroxidase (TPO), leading to transient congenital hypothyroidism (CH). Three Japanese boys with nonconsanguineous parents were diagnosed with CH during their neonatal screenings. All patients presented with moderate-to-severe neonatal hypothyroidism and were diagnosed with transient CH after re-evaluation of thyroid function. Two siblings were compound heterozygous for p.[R1110Q]+[Y1180X] in DUOX2; one of them was also heterozygous for p.[R361L] in TPO. The third patient was compound heterozygous for p.[L1160del]+[R1334W] in DUOX2 and heterozygous for p.[P883S] in TPO. This is the first report of a de novo L1160del mutation affecting the DUOX2 gene and of the novel mutations Y1180X in DUOX2 and R361L in TPO. R1110Q and L1160del were found to reduce H2O2 production (5%-9%, p<0.01), while Y1180X, which introduces a premature stop codon, did not confer detectable H2O2 production (-0.7%±0.6%, p<0.01). Moreover, R1334W, a missense mutation possibly affecting electron transfer, led to reduced H2O2 production (24%±0.9%, p<0.01) in vitro, and R1110Q and R1334W resulted in reduced protein expression. Y1180X was detected in a 120 kDa truncated form, whereas L1160del expression was maintained. Further, R361L, a novel missense mutation in TPO, caused partial reduction in peroxidase activity (20.6%±0.8%, p=0.01), whereas P883S, a missense variant, increased it (133.7%±2.8%, p=0.02). The protein expression levels in the case of R361L and P883S were maintained. In conclusion, we provide clinical and in vitro demonstrations of different functional defects and phenotypic heterogeneity in the same thyroid hormonogenesis pathway.

摘要

在此,我们描述了三例双氧化酶2(DUOX2)烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶(NOX)结构域功能丧失突变的病例,这些突变同时伴有甲状腺过氧化物酶(TPO)的错义突变,导致短暂性先天性甲状腺功能减退症(CH)。三名父母无血缘关系的日本男孩在新生儿筛查期间被诊断为CH。所有患者均表现为中度至重度新生儿甲状腺功能减退,在重新评估甲状腺功能后被诊断为短暂性CH。两名兄弟姐妹在DUOX2中为p.[R1110Q]+[Y1180X]的复合杂合子;其中一人在TPO中也为p.[R361L]的杂合子。第三名患者在DUOX2中为p.[L1160del]+[R1334W]的复合杂合子,在TPO中为p.[P883S]的杂合子。这是首次报道影响DUOX2基因的新发L1160del突变以及DUOX2中的新突变Y1180X和TPO中的R361L。发现R1110Q和L1160del可降低过氧化氢生成(5%-9%,p<0.01),而引入过早终止密码子的Y1180X未产生可检测到的过氧化氢生成(-0.7%±0.6%,p<0.01)。此外,可能影响电子传递的错义突变R1334W在体外导致过氧化氢生成减少(24%±0.9%,p<0.01),R1110Q和R1334W导致蛋白质表达降低。Y1180X以120 kDa的截短形式被检测到,而L1160del的表达得以维持。此外,TPO中的新错义突变R361L导致过氧化物酶活性部分降低(20.6%±0.8%,p=0.01),而错义变体P883S则使其增加(133.7%±2.8%,p=0.02)。R361L和P883S情况下的蛋白质表达水平得以维持。总之,我们提供了同一甲状腺激素生成途径中不同功能缺陷和表型异质性的临床和体外证据。

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