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Updated: Jan 30, 2026

Comparative Lesions Analysis Through a Targeted Sequencing Approach
Published on: November 5, 2019
Identification of sequence variants associated with severe microtia-astresia by targeted sequencing
Pu Wang1, Yibei Wang1, Xinmiao Fan1
1Department of Otolaryngology, Peking Union Medical College Hospital, Beijing, China.
Background:
Microtia-atresia is characterized by abnormalities of the auricle (microtia) and aplasia or hypoplasia of the external auditory canal, often associated with middle ear abnormalities. To date, no causal genetic mutations or genes have been identified in microtia-atresia patients.
Methods:
We designed a panel of 131 genes associated with external/middle or inner ear deformity. Targeted genomic capturing combined with next-generation sequencing (NGS) was utilized to screen for mutations in 40 severe microtia-atresia patients. Mutations detected by NGS were filtered and validated. And then mutations were divided into three categories-rare or novel variants, low-frequency variants and common variants-based on their frequency in the public database. The rare or novel mutations were prioritized by pathogenicity analysis. For the low-frequency variants and common variants, we used association studies to explore risk factors of severe microtia-atresia.
Results:
Sixty-five rare heterozygous mutations of 42 genes were identified in 27 (67.5%) severe microtia-atresia patients. Association studies to determine genes that were potentially pathogenic found that PLEC, USH2A, FREM2, DCHS1, GLI3, POMT1 and GBA genes were significantly associated with severe microtia-atresia. Of these, DCHS1 was strongly suggested to cause severe microtia-atresia as it was identified by both low-frequency and common variants association studies. A rare mutation (c.481C > T, p.R161C) in DCHS1 identified in one individual may be deleterious and may cause severe microtia-atresia.
Conclusion:
We identified several genes that were significantly associated with severe microtia-atresia. The findings provide new insights into genetic background of external ear deformities.
Insights
Genetic analysis identified several genes linked to severe microtia-atresia, a congenital ear deformity. The DCHS1 gene showed a strong association, offering new insights into the genetic causes of external ear abnormalities.
Area of Science:
- Genetics
- Developmental Biology
- Otolaryngology
Background:
- Microtia-atresia involves auricle abnormalities and external auditory canal malformations, often with middle ear involvement.
- The genetic basis of microtia-atresia remains largely unknown, with no causal mutations or genes previously identified.
Purpose of the Study:
- To screen for genetic mutations associated with severe microtia-atresia using a targeted gene panel.
- To identify potential causative genes and understand the genetic architecture of external ear deformities.
Main Methods:
- A panel of 131 ear deformity-associated genes was designed.
- Next-generation sequencing (NGS) was used to screen 40 severe microtia-atresia patients.
- Mutations were filtered, validated, categorized (rare, low-frequency, common), and analyzed for pathogenicity and association.
Main Results:
- Sixty-five rare heterozygous mutations in 42 genes were found in 27 patients (67.5%).
- PLEC, USH2A, FREM2, DCHS1, GLI3, POMT1, and GBA genes were significantly associated with severe microtia-atresia.
- The DCHS1 gene was strongly implicated due to associations from both low-frequency and common variants; a specific rare mutation (c.481C>T, p.R161C) may be deleterious.
Conclusions:
- Several genes, notably DCHS1, are significantly associated with severe microtia-atresia.
- These findings contribute novel insights into the genetic underpinnings of external ear malformations.
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