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GNAQ/GNA11 Mosaicism Is Associated with Abnormal Serum Calcium Indices and Microvascular Neurocalcification
Nicole Knöpfel1, Davide Zecchin2, Hanna Richardson3
1Mosaicism and Precision Medicine Laboratory, Francis Crick Institute, London, United Kingdom; Genetics and Genomic Medicine, UCL GOS Institute of Child Health, London, United Kingdom; Department of Paediatric Dermatology, Great Ormond St Hospital for Children, London, United Kingdom.
Abstract:
Mosaic mutations in genes GNAQ or GNA11 lead to a spectrum of diseases including Sturge-Weber syndrome and phakomatosis pigmentovascularis with dermal melanocytosis. The pathognomonic finding of localized "tramlining" on plain skull radiography, representing medium-sized neurovascular calcification and associated with postnatal neurological deterioration, led us to study calcium metabolism in a cohort of 42 children. In this study, we find that 74% of patients had at least one abnormal measurement of calcium metabolism, the commonest being moderately low serum ionized calcium (41%) or high parathyroid hormone (17%). Lower levels of ionized calcium even within the normal range were significantly associated with seizures, and with specific antiepileptics despite normal vitamin D levels. Successive measurements documented substantial intrapersonal fluctuation in indices over time, and DEXA scans were normal in patients with hypocalcemia. Neurohistology from epilepsy surgery in five patients revealed not only intravascular, but perivascular and intraparenchymal mineral deposition and intraparenchymal microvascular disease in addition to previously reported findings. Neuroradiology review clearly demonstrated progressive calcium deposition in individuals over time. These findings and those of the adjoining paper suggest that calcium deposition in the brain of patients with GNAQ/GNA11 mosaicism may not be a nonspecific sign of damage as was previously thought, but may instead reflect the central postnatal pathological process in this disease spectrum.
Insights
Mosaic GNAQ/GNA11 mutations cause neurological issues. This study found abnormal calcium metabolism in 74% of affected children, linking low calcium to seizures and progressive brain calcification.
Area of Science:
- Neuroscience
- Genetics
- Pediatrics
Background:
- Mosaic mutations in GNAQ or GNA11 genes are linked to Sturge-Weber syndrome and phakomatosis pigmentovascularis.
- Neurological deterioration and "tramlining" calcifications are observed in affected children.
Purpose of the Study:
- To investigate calcium metabolism abnormalities in children with GNAQ/GNA11 mosaicism.
- To explore the relationship between calcium dysregulation, neurological symptoms, and brain calcification.
Main Methods:
- Studied calcium metabolism in 42 children with GNAQ/GNA11 mosaicism.
- Analyzed serum ionized calcium, parathyroid hormone, vitamin D levels, and DEXA scans.
- Reviewed neurohistology and neuroradiology findings.
Main Results:
- 74% of patients exhibited abnormal calcium metabolism, most commonly low serum ionized calcium (41%) or high parathyroid hormone (17%).
- Lower ionized calcium levels correlated significantly with seizures, independent of vitamin D levels.
- Neurohistology revealed widespread mineral deposition, and neuroradiology showed progressive brain calcification.
Conclusions:
- Calcium metabolism disturbances are prevalent in GNAQ/GNA11-related disorders.
- Progressive brain calcification may be a central pathological process, not just a sign of damage.
- These findings highlight the importance of monitoring calcium levels in affected children.
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