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In Vivo Functional Study of Disease-associated Rare Human Variants Using Drosophila
Published on: August 20, 2019
Transient congenital hypothyroidism caused by compound heterozygous mutations affecting the NADPH-oxidase domain of
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.
Insights
Loss-of-function mutations in DUOX2 and TPO genes cause transient congenital hypothyroidism. Novel mutations were identified, impacting hydrogen peroxide production and thyroid hormone synthesis, leading to varied clinical presentations.
Area of Science:
- Genetics
- Endocrinology
- Molecular Biology
Background:
- Congenital hypothyroidism (CH) can arise from genetic defects in thyroid hormone synthesis.
- Dual oxidase 2 (DUOX2) and thyroid peroxidase (TPO) are crucial for producing thyroid hormones via hydrogen peroxide (H2O2).
Observation:
- Three Japanese boys presented with transient CH, linked to mutations in DUOX2 and TPO.
- Specific compound heterozygous and heterozygous mutations were identified in DUOX2 (R1110Q, Y1180X, L1160del, R1334W) and TPO (R361L, P883S).
Findings:
- Mutations R1110Q and L1160del in DUOX2 reduced H2O2 production; Y1180X abolished it, and R1334W also reduced H2O2 production and protein expression.
- The novel TPO mutation R361L partially reduced peroxidase activity, while P883S increased it, with both maintaining protein expression.
- This study reports de novo L1160del in DUOX2 and novel mutations Y1180X (DUOX2) and R361L (TPO).
Implications:
- These findings demonstrate diverse functional impacts of DUOX2 and TPO mutations on H2O2 production and thyroid hormone synthesis.
- Genetic variations in DUOX2 and TPO can lead to phenotypic heterogeneity in transient congenital hypothyroidism.
- Understanding these molecular defects is key for diagnosing and managing congenital hypothyroidism.
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