Phenotypic analysis of individuals with Costello syndrome due to HRAS p.G13C
Karen W Gripp1, Elizabeth Hopkins, Katia Sol-Church
1Division of Medical Genetics, A. I. duPont Hospital for Children, Wilmington, Delaware, USA. kgripp@nemours.org
Insights
Costello syndrome mutations in HRAS show subtle genotype-phenotype differences. The p.G13C mutation is linked to fewer cardiac issues, papillomata, and distinct ectodermal findings like loose anagen hair.
Area of Science:
- Genetics
- Human Physiology
- Developmental Biology
Background:
- Costello syndrome is a rare genetic disorder caused by de novo germline mutations in the HRAS proto-oncogene.
- Key features include failure-to-thrive, cardiac abnormalities, distinctive facial features, tumor predisposition, and cognitive disabilities.
- Most mutations occur at glycine residues 12 or 13, with p.G12S being the most common.
Purpose of the Study:
- To investigate subtle genotype-phenotype differences in Costello syndrome.
- To compare Costello syndrome individuals with the p.G13C HRAS mutation to those with the common p.G12S mutation.
Main Methods:
- Cohort comparison of 12 individuals with Costello syndrome harboring the p.G13C mutation against individuals with the p.G12S mutation.
- Clinical data analysis focusing on characteristic Costello syndrome features and novel findings.
Main Results:
- Individuals with p.G13C exhibited typical Costello syndrome features but subjectively less coarse facial features.
- Statistically significant differences included absence of multifocal atrial tachycardia, ulnar deviation, papillomata, and fewer neurosurgical procedures.
- Fewer individuals with p.G13C had short stature without growth hormone use.
- Novel ectodermal findings, including loose anagen hair and unusually long eyelashes (dolichocilia), were observed in the p.G13C cohort.
Conclusions:
- Subtle genotype-phenotype correlations exist for HRAS mutations in Costello syndrome.
- The p.G13C mutation may be associated with a milder phenotype regarding certain cardiac and ectodermal features.
- Distinctive ectodermal findings in p.G13C suggest mutation-specific cellular effects, warranting further investigation.
Abstract:
Costello syndrome is characterized by severe failure-to-thrive, short stature, cardiac abnormalities (heart defects, tachyarrhythmia, and hypertrophic cardiomyopathy (HCM)), distinctive facial features, a predisposition to papillomata and malignant tumors, postnatal cerebellar overgrowth resulting in Chiari 1 malformation, and cognitive disabilities. De novo germline mutations in the proto-oncogene HRAS cause Costello syndrome. Most mutations affect the glycine residues in position 12 or 13, and more than 80% of patients share p.G12S. To test the hypothesis that subtle genotype-phenotype differences exist, we report the first cohort comparison between 12 Costello syndrome individuals with p.G13C and individuals with p.G12S. The individuals with p.G13C had many typical findings including polyhydramnios, failure-to-thrive, HCM, macrocephaly with posterior fossa crowding, and developmental delay. Subjectively, their facial features were less coarse. Statistically significant differences included the absence of multifocal atrial tachycardia (P-value = 0.033), ulnar deviation of the wrist (P < 0.001) and papillomata (P = 0.003), and fewer neurosurgical procedures (P = 0.024). Fewer individuals with p.G13C had short stature (height below -2 SD) without use of growth hormone (P < 0.001). The noteworthy absence of malignant tumors did not reach statistical significance. Novel ectodermal findings were noted in individuals with p.G13C, including loose anagen hair resulting in easily pluckable hair with a matted appearance, different from the tight curls typical for most Costello syndrome individuals. Unusually long eye lashes requiring trimming are a novel finding we termed dolichocilia. These distinctive ectodermal findings suggest a cell type specific effect of this particular mutation. Additional patients are needed to validate these findings.
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