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.

BMC Medical Genomics
|January 30, 2019
PubMed
Abstract

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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