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Updated: Apr 16, 2026

Transuterine Fetal Tracheal Occlusion Model in Mice
Published on: February 5, 2021
FBN1 contributing to familial congenital diaphragmatic hernia
Tyler F Beck1, Philippe M Campeau, Shalini N Jhangiani
1Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas.
Insights
Exome sequencing identified a fibrillin 1 gene (FBN1) mutation causing Marfan syndrome in a family with congenital diaphragmatic hernia (CDH). This suggests FBN1 mutations are an underrecognized cause of familial CDH.
Area of Science:
- Genetics
- Developmental Biology
- Medical Genetics
Background:
- Congenital diaphragmatic hernia (CDH) is a severe birth defect with a complex etiology.
- Familial cases of CDH are rare, and their genetic underpinnings are often unclear.
- Marfan syndrome, typically associated with aortic and ocular abnormalities, has not been strongly linked to CDH.
Observation:
- A family presented with recurrent paraesophageal and central CDH.
- Exome sequencing revealed a frameshift mutation in the fibrillin 1 gene (FBN1) in affected individuals.
- Clinical re-evaluation identified ectopia lentis, confirming Marfan syndrome.
Findings:
- FBN1 mutations, previously linked to rare CDH cases, are associated with a specific pattern of paraesophageal hernias.
- The identified FBN1 mutation (c.4969_4970insA, p.Ile1657Asnfs*30) is a likely cause of CDH in this family.
- Deleterious sequence changes in other CDH-related genes (FREM1, DES, PAX3, MET) were found but likely have a minor contribution compared to the FBN1 mutation.
Implications:
- Exome sequencing is a valuable tool for diagnosing CDH, especially in familial cases.
- FBN1 mutations should be considered in the differential diagnosis of individuals and families with CDH.
- This study highlights the potential for uncovering novel genetic factors contributing to complex congenital anomalies.
Abstract:
Congenital diaphragmatic hernia (CDH) is a relatively common, life--threatening birth defect. We present a family with recurrent CDH--paraesophageal and central--for whom exome sequencing (ES) revealed a frameshift mutation (c.4969_4970insA, p.Ile1657Asnfs*30) in the fibrillin 1 gene (FBN1) that causes Marfan syndrome. A diagnosis of Marfan syndrome had not been considered previously in this family. However, a review of the literature demonstrated that FBN1 mutations have an unusual pattern of CDH in which paraesophageal hernias are particularly common. Subsequent clinical evaluations revealed evidence for ectopia lentis in affected family members supporting a clinical diagnosis of Marfan syndrome. Since only two other cases of familial CDH have been described in association with FBN1 mutations, we investigated an oligogenic hypothesis by examining ES data for deleterious sequence changes in other CDH-related genes. This search revealed putatively deleterious sequence changes in four other genes that have been shown to cause diaphragm defects in humans and/or mice--FREM1, DES, PAX3 and MET. It is unclear whether these changes, alone or in aggregate, are contributing to the development of CDH in this family. However, their individual contribution is likely to be small compared to that of the frameshift mutation in FBN1. We conclude that ES can be used to identify both major and minor genetic factors that may contribute to CDH. These results also suggest that ES should be considered in the diagnostic evaluation of individuals and families with CDH, particularly when other diagnostic modalities have failed to reveal a molecular etiology.
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