Cerebrofacial vascular metameric syndrome is caused by somatic pathogenic variants in PIK3CA
Sarah E Sheppard1,2, Victoria R Sanders1,2, Abhay Srinivasan2,3
1Division of Human Genetics, Department of Pediatrics, Department of Pediatrics, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania 19104, USA.
Abstract:
Disorganized morphogenesis of arteries, veins, capillaries, and lymphatic vessels results in vascular malformations. Most individuals with isolated vascular malformations have postzygotic (mosaic), activating pathogenic variants in a handful of oncogenes within the PI3K-RAS-MAPK pathway (Padia et al., Laryngoscope Investig Otolaryngol 4: 170-173 [2019]). Activating pathogenic variants in the gene PIK3CA, which encodes for the catalytic subunit of phosphatidylinositol 3-kinase, are present in both lymphatic and venous malformations as well as arteriovenous malformations in other complex disorders such as CLOVES syndrome (congenital, lipomatous, overgrowth, vascular malformations, epidermal anevi, scoliosis) (Luks et al., Pediatr Dev Pathol 16: 51 [2013]; Luks et al., J Pediatr 166: 1048-1054.e1-5 [2015]; Al-Olabi et al., J Clin Invest 128: 1496-1508 [2018]). These vascular malformations are part of the PIK3CA-related overgrowth spectrum, a spectrum of entities that have regionalized disordered growth due to the presence of tissue-restricted postzygotic PIK3CA pathogenic variants (Keppler-Noreuil et al., Am J Med Genet A 167A: 287-295 [2015]). Cerebrofacial vascular metameric syndrome (CVMS; also described as cerebrofacial arteriovenous metameric syndrome, Bonnet-Dechaume-Blanc syndrome, and Wyburn-Mason syndrome) is the association of retinal, facial, and cerebral vascular malformations (Bhattacharya et al., Interv Neuroradiol 7: 5-17 [2001]; Krings et al., Neuroimaging Clin N Am 17: 245-258 [2007]). The segmental distribution, the presence of tissue overgrowth, and the absence of familial recurrence are all consistent with CVMS being caused by a postzygotic mutation, which has been hypothesized by previous authors (Brinjiki et al., Am J Neuroradiol 39: 2103-2107 [2018]). However, the genetic cause of CVMS has not yet been described. Here, we present three individuals with CVMS and mosaic activating pathogenic variants within the gene PIK3CA We propose that CVMS be recognized as part of the PIK3CA-related overgrowth spectrum, providing justification for future trials using pharmacologic PIK3CA inhibitors (e.g., alpelisib) for these difficult-to-treat patients.
Insights
Cerebrofacial vascular metameric syndrome (CVMS) is linked to mosaic activating variants in the PIK3CA gene. This finding suggests CVMS is part of the PIK3CA-related overgrowth spectrum, potentially benefiting from PIK3CA inhibitor treatments.
Area of Science:
- Genetics
- Vascular Biology
- Developmental Biology
Background:
- Vascular malformations arise from disorganized vessel development.
- Mosaic activating variants in PI3K-RAS-MAPK pathway genes are common in vascular malformations.
- PIK3CA variants are implicated in lymphatic, venous, and arteriovenous malformations, including CLOVES syndrome and the PIK3CA-related overgrowth spectrum.
Purpose of the Study:
- To investigate the genetic cause of Cerebrofacial vascular metameric syndrome (CVMS).
- To determine if CVMS is associated with PIK3CA variants.
- To propose classifying CVMS within the PIK3CA-related overgrowth spectrum.
Main Methods:
- Genetic analysis of three individuals diagnosed with CVMS.
- Identification of mosaic activating pathogenic variants in the PIK3CA gene.
- Review of clinical features and literature on CVMS and PIK3CA-related disorders.
Main Results:
- Three patients with CVMS were found to have mosaic activating variants in PIK3CA.
- These findings align with the known characteristics of postzygotic mutations causing regionalized overgrowth.
- The genetic basis of CVMS is identified as mosaic PIK3CA variants.
Conclusions:
- Cerebrofacial vascular metameric syndrome (CVMS) is caused by mosaic activating PIK3CA variants.
- CVMS should be recognized as part of the PIK3CA-related overgrowth spectrum.
- This discovery supports clinical trials for PIK3CA inhibitors in treating CVMS.
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