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Five novel inactivating mutations in the thyroid peroxidase gene responsible for congenital goiter and iodide
Carina M Rivolta1, Sebastián A Esperante, Laura Gruñeiro-Papendieck
1Laboratorio de Biología Molecular, Cátedra de Genética y Biología Molecular, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Buenos Aires, Argentina.
Abstract:
Thyroid peroxidase (TPO) defects, typically transmitted as autosomal recessive traits, result in hypothyroid goiters with failure to convert iodide into organic iodine. We analyzed the TPO gene in 14 unrelated patients with clinical evidence of iodide organification defects. Seven of the affected individuals harbored mutations in the TPO gene; one was compound heterozygous, the others were simply heterozygous for TPO mutations. Five novel mutations have been identified, one of which was found to be a single nucleotide deletion, while the other four were single nucleotide substitutions. A frameshift mutation c.387delC was detected in exon 5 which leads to an early termination signal in exon 7 (p.N129fsX208). Two missense mutations were identified in exon 8. The first, a c.920A>C transversion that results in a p.N307T substitution, was found in two patients. The second, a c.1297G>A transition, results in p.V433M. A c.1496C>T transition was detected in exon 9 that caused the substitution p.P499L. Finally, in exon 14 a c.2422T>C transition was identified, causing a p.C808R change. In addition, the previously reported GGCC duplication in exon 8 (c.1186_1187insGGCC; p.R396fsX472) was also detected in two affected individuals, one of whom was a compound heterozygous (p.R396fsX472/p.V433M).
Insights
Genetic analysis of thyroid peroxidase (TPO) mutations in patients with iodide organification defects identified five novel mutations, contributing to a better understanding of congenital hypothyroidism.
Area of Science:
- Genetics
- Endocrinology
- Molecular Biology
Background:
- Thyroid peroxidase (TPO) defects cause hypothyroid goiters due to impaired iodide organification.
- These defects are typically inherited as autosomal recessive traits.
Purpose of the Study:
- To analyze the TPO gene in patients with clinical evidence of iodide organification defects.
- To identify novel mutations in the TPO gene responsible for these defects.
Main Methods:
- Genetic analysis of the TPO gene in 14 unrelated patients.
- Sequencing of TPO exons to identify mutations.
- Characterization of identified mutations, including single nucleotide substitutions and deletions.
Main Results:
- Seven patients harbored TPO gene mutations, with one being compound heterozygous.
- Five novel mutations were identified: one frameshift (c.387delC) and four missense mutations (p.N307T, p.V433M, p.P499L, p.C808R).
- A previously reported mutation (c.1186_1187insGGCC; p.R396fsX472) was also found in two patients.
Conclusions:
- Genetic analysis revealed TPO gene mutations in a significant portion of patients with iodide organification defects.
- The identification of novel mutations expands the known spectrum of TPO gene defects.
- These findings enhance the understanding of the genetic basis of congenital hypothyroidism related to TPO dysfunction.
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