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Updated: Feb 11, 2026

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Published on: January 6, 2015
Mutations in plasmalemma vesicle-associated protein cause severe syndromic protein-losing enteropathy
Ilse Julia Broekaert1, Kerstin Becker1,2, Ingo Gottschalk3
1Department of Pediatrics, University Hospital Cologne, Cologne, Germany.
Insights
Genetic mutations in the Plasmalemma Vesicle-Associated Protein (PLVAP) gene cause fatal protein-losing enteropathy (PLE) in newborns. This discovery aids in diagnosing this rare genetic disorder with syndromic features.
Area of Science:
- Genetics
- Molecular Biology
- Pediatrics
Background:
- Protein-losing enteropathy (PLE) is a condition characterized by gastrointestinal protein leakage.
- It can present as congenital diarrhea and requires differentiation from other diarrheal disorders.
- Primary PLE has diverse genetic causes, with new defects continually being identified.
Observation:
- A case of a newborn infant with fatal PLE was investigated to identify the causative genetic mutation.
- Whole exome sequencing (WES) was performed on the index patient.
- Clinical data and WES results were analyzed and compared with existing literature.
Findings:
- A novel homozygous stop mutation (c.988C>T, p.Q330*) in the Plasmalemma Vesicle-Associated Protein (PLVAP) gene was identified.
- This mutation is predicted to cause a complete loss of PLVAP protein, disrupting endothelial fenestrae diaphragms and leading to protein extravasation and PLE.
- The affected newborn also exhibited facial dysmorphism and renal, ocular, and cardiac anomalies.
Implications:
- Mutations in the PLVAP gene are confirmed as a cause of syndromic protein-losing enteropathy.
- Prenatal anomalies, severe PLE, and associated syndromic features can serve as diagnostic indicators for this rare condition.
Background:
Protein-losing enteropathy (PLE) is characterised by gastrointestinal protein leakage due to loss of mucosal integrity or lymphatic abnormalities. PLE can manifest as congenital diarrhoea and should be differentiated from other congenital diarrhoeal disorders. Primary PLEs are genetically heterogeneous and the underlying genetic defects are currently emerging.
Objectives:
We report an infant with fatal PLE for whom we aimed to uncover the underlying pathogenic mutation.
Methods:
We performed whole exome sequencing (WES) for the index patient. Variants were classified based on the American College of Medical Genetics and Genomics guidelines. WES results and our detailed clinical description of the patient were compared with the literature.
Results:
We discovered a novel homozygous stop mutation (c.988C>T, p.Q330*) in the Plasmalemma Vesicle-Associated Protein (PLVAP) gene in a newborn with fatal PLE, facial dysmorphism, and renal, ocular and cardiac anomalies. The Q330* mutation is predicted to result in complete loss of PLVAP protein expression leading to deletion of the diaphragms of endothelial fenestrae, resulting in plasma protein extravasation and PLE. Recently, another single homozygous stop mutation in PLVAP causing lethal PLE in an infant was reported.
Conclusions:
Our findings validate PLVAP mutations as a cause of syndromic PLE. Prenatal anomalies, severe PLE and syndromic features may guide the diagnosis of this rare disease.
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