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Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
Neonatal lethal Costello syndrome and unusual dinucleotide deletion/insertion mutations in HRAS predicting p.Gly12Val
Emma M M Burkitt-Wright1, Lisa Bradley, Jennifer Shorto
1Genetic Medicine, Manchester Academic Health Science Centre, University of Manchester and Central Manchester University Hospitals NHS Foundation Trust, Manchester, UK.
Insights
De novo HRAS mutations, specifically p.Gly12Val, cause severe Costello syndrome (CS) in infants. These mutations are linked to high mortality within six weeks, emphasizing a poor prognosis for affected newborns.
Area of Science:
- Genetics
- Pediatrics
- Pathology
Background:
- Costello syndrome (CS) is a rare genetic disorder caused by de novo heterozygous mutations in the HRAS gene.
- Specific HRAS mutations, including p.Gly12Val, p.Gly12Asp, and p.Gly12Cys, are associated with severe and often lethal forms of CS.
Observation:
- This study reports on four patients with HRAS mutations predicting p.Gly12Val, identified through clinical molecular genetic testing.
- Three of these patients had deletion/insertion mutations affecting coding nucleotides 35 and 36.
- Clinical presentations included high birth weight, polyhydramnios, cardiac hypertrophy, respiratory distress, muscle weakness, and postnatal growth failure.
Findings:
- All four patients with HRAS p.Gly12Val mutations died within six postnatal weeks, confirming a very poor prognosis.
- Subtle or non-specific dysmorphic features were noted, alongside congenital anomalies like atrial arrhythmia, alveolar dysplasia, and bronchopulmonary dysplasia.
- The rapid and fatal disease course, coupled with subtle dysmorphism, suggests CS may be under-recognized in critically ill neonates.
Implications:
- HRAS p.Gly12Val mutations are strong predictors of a lethal infantile phenotype in Costello syndrome.
- Costello syndrome should be considered in the differential diagnosis for neonates presenting with cardiac hypertrophy and pulmonary issues.
- Early recognition and understanding of the poor prognosis are crucial for clinical management and parental counseling.
Abstract:
De novo heterozygous mutations in HRAS cause Costello syndrome (CS), a condition with high mortality and morbidity in infancy and early childhood due to cardiac, respiratory, and muscular complications. HRAS mutations predicting p.Gly12Val, p.Gly12Asp, and p.Gly12Cys substitutions have been associated with severe, lethal, CS. We report on molecular, clinical, and pathological findings in patients with mutations predicting HRAS p.Gly12Val that were identified in our clinical molecular genetic testing service. Such mutations were identified in four patients. Remarkably, three were deletion/insertion mutations affecting coding nucleotides 35 and 36. All patients died within 6 postnatal weeks, providing further evidence that p.Gly12Val mutations predict a very poor prognosis. High birth weight, polyhydramnios (and premature birth), cardiac hypertrophy, respiratory distress, muscle weakness, and postnatal growth failure were present. Dysmorphism was subtle or non-specific, with edema, coarsened facial features, prominent forehead, depressed nasal bridge, anteverted nares, and low-set ears. Proximal upper limb shortening, a small bell-shaped chest, talipes, and fixed flexion deformities of the wrists were seen. Neonatal atrial arrhythmia, highly suggestive of CS, was also present in two patients. One patient had congenital alveolar dysplasia, and another, born after 36 weeks' gestation, bronchopulmonary dysplasia. A rapidly fatal disease course, and the difficulty of identifying subtle dysmorphism in neonates requiring intensive care, suggest that this condition remains under-recognized, and should enter the differential diagnosis for very sick infants with a range of clinical problems including cardiac hypertrophy and disordered pulmonary development. Clinical management should be informed by knowledge of the poor prognosis of this condition.
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