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Case Report: Whole exome sequencing identifies compound heterozygous variants in the TRAPPC9 gene in a child with
Bingxuan Yu1,2, Jing Chen1,2, Shuo Yang1,2
1Department of Medical Genetics/Prenatal Diagnostic Center, West China Second University Hospital, Sichuan University, Chengdu, China.
Insights
Compound heterozygous variants in the TRAPPC9 gene were identified as the cause of global developmental delay in a young Chinese girl. This finding highlights the importance of genetic testing for developmental disorders and prenatal diagnosis.
Area of Science:
- Genetics
- Pediatrics
- Molecular Biology
Background:
- Global developmental delay affects 10-15% of children under 5 worldwide.
- Multiple factors contribute to developmental delay, including genetic predispositions.
- Specific gene variants, like those in EFNB1, MECP2, and TRAPPC9, are implicated in developmental disorders.
Observation:
- A 3-year-old girl presented with global developmental delay affecting motor, personal-social, and language skills.
- Trio whole exome sequencing was employed to determine the genetic cause of her condition.
- Sanger sequencing and qPCR confirmed the identified genetic etiology.
Findings:
- The patient was found to have compound heterozygous variants in the TRAPPC9 gene.
- These variants, inherited from unaffected parents, were classified as "likely pathogenic" by ACMG guidelines.
- The identified TRAPPC9 variants are associated with a significant pathogenic effect, indicating a recessive inheritance pattern.
Implications:
- This study identifies compound heterozygous TRAPPC9 variants as a cause of developmental delay in a Chinese child.
- The findings expand the known genotype spectrum for the TRAPPC9 gene.
- This research underscores the importance of genetic counseling and prenatal testing for families with a history of developmental delay.
Background:
Developmental delay in children under 5 years old, which occurs globally with an incidence of 10%-15%, is caused by multiple factors including genetics, prenatal conditions, perinatal complications, postnatal influences, social factors, and nutritional deficiencies. Gene variants such as EFNB1, MECP2 and TRAPPC9 play a significant role in protein deformation and downregulation of nuclear factor κB (NF-κB) activity.
Methods:
A 3-year-old girl, who exhibits poor gross motor skills, personal-social development, auditory language, hand-eye coordination, and visual performance, was diagnosed with global developmental delay. Trio whole exome sequencing was conducted to identify the genetic etiology of her condition. The identified genetic etiology was then validated through Sanger sequencing and quantitative polymerase chain reaction (qPCR).
Results:
Genetic analysis revealed that the patient had compound heterozygous variants in the TRAPPC9 gene. These include a c.1928del frameshift variant inherited from the unaffected father and a deletion in exon 12 inherited from the unaffected mother. According to the American College of Medical Genetics (ACMG) guidelines, these variants were classified as "likely pathogenic".
Conclusion:
The study revealed that compound heterozygous TRAPPC9 gene variants cause developmental delay in a Chinese girl. These variants have been classified as having significant pathogenic effect according to the ACMG criteria, suggesting a recessive genetic pattern and highlighting the importance of prenatal testing for future offspring. Furthermore, our findings expand the genotype spectrum of the TRAPPC9 gene, and provide more comprehensive information regarding genetic counseling for children experiencing developmental delay.
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