[Genetic mutation profiles for children with congenital hypothyroidism in Fujian province]
1College of Clinical Medicine for Obstetrics & Gynecology and Pediatrics, Fujian Medical University, Department of Clinical Laboratory, Fujian Children's Hospital, Fuzhou 350001, China.
Insights
Genetic mutations in thyroid hormone synthesis genes, particularly DUOX2, TG, and TPO, are frequent in children with congenital hypothyroidism (CH) in Fujian. This study highlights key genetic factors contributing to CH in this population.
Area of Science:
- Genetics and Molecular Biology
- Endocrinology
- Pediatrics
Context:
- Congenital hypothyroidism (CH) is a common endocrine disorder in newborns.
- Understanding the genetic basis of CH is crucial for diagnosis and management.
- This study focuses on the genetic landscape of CH in Fujian Province, China.
Purpose:
- To investigate the mutation characteristics of pathogenic genes in children with CH in Fujian.
- To determine the frequency, type, and distribution of mutations in genes related to thyroxine synthesis and thyroid development.
Summary:
- Retrospective analysis of 116 CH children using targeted exome sequencing.
- Identified 351 potential functional mutations in 105 patients (90.5% detection rate).
- DUOX2 (66.4%), TG (23.3%), DUOXA1 (23.3%), and TPO (12.1%) were the most frequently mutated genes, primarily involved in thyroid hormone synthesis.
Impact:
- Identifies DUOX2, TG, and TPO as major mutated genes in Fujian's CH pediatric population.
- Provides insights into the genetic etiology of CH, aiding in genetic counseling and early diagnosis.
- Contributes to a better understanding of the genetic heterogeneity of congenital hypothyroidism.
Abstract:
Objective: To explore the mutation characteristics of pathogenic genes in children with congenital hypothyroidism (CH) in Fujian. Methods: The clinical data of 116 unrelated CH children diagnosed in Fujian Provincial Maternal and Child Health Hospital from January 2019 to September 2020 were retrospectively analyzed, including 50 females and 66 males, with an average age of (20±10) days at diagnosis. Targeted exome sequencing technology was used to detect the mutation frequency, type and distribution characteristics of 29 genes related to thyroxine synthesis or thyroid development. Results: Three hundred and fifty-one potential functional mutations were detected in 105 of 116 CH patients, with a detection rate of 90.5% (105/116). DUOX2 (66.4%, 77/116) was the most frequent mutated gene, followed by TG (23.3%, 27/116), DUOXA1 (23.3%, 27/116), and TPO (12.1%, 14/116), which were all involved in thyroid hormone synthesis. Among the 105 children with CH, 70 cases carried double allele mutation. Except for 3 cases of thyroid dysplasia related genes (2 cases of TSHR and 1 case of GLIS3), the rest were also related to thyroid hormone synthesis. The gene with the highest carrier rate was DUOX2 (68.8%, 59/70), followed by TG (8.6%, 6/70), TPO (4.3%, 3/70), DUOXA2 (1.4%, 1/70) and DUOXA1 (1.4%, 1/70). Conclusion: The main mutated genes in CH children in Fujian are the key genes involved in thyroid hormone synthesis, such as DUOX2, TG and TPO.
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