Megalencephaly syndromes and activating mutations in the PI3K-AKT pathway: MPPH and MCAP
Ghayda M Mirzaa1, Jean-Baptiste Rivière, William B Dobyns
1Department of Pediatrics, Center for Integrative Brain Research, University of Washington, Seattle Children's Research Institute, Seattle, WA, USA. gmirzaa@uw.edu
Abstract:
The megalencephaly-polymicrogyria-polydactyly-hydrocephalus (MPPH) and megalencephaly-capillary malformation (MCAP) syndromes are highly recognizable and partly overlapping disorders of brain overgrowth (megalencephaly). Both syndromes are characterized by congenital or early postnatal megalencephaly, with a high risk for progressive ventriculomegaly leading to hydrocephalus and cerebellar tonsillar ectopia leading to Chiari malformation, and cortical brain abnormalities, specifically polymicrogyria. MCAP is further characterized by distinct cutaneous capillary malformations, finger or toe syndactyly, postaxial polydactyly, variable connective tissue dysplasia and mild focal or segmental body overgrowth, among other features. MPPH, on the other hand, lacks consistent vascular or somatic manifestations besides postaxial polydactyly in almost half of reported individuals. We identified de novo germline mutations in PIK3R2 and AKT3 in individuals with MPPH, and both postzygotic, mosaic and rare germline mutations in PIK3CA in individuals with MCAP. PIK3R2, AKT3, and PIK3CA are members of the critical phosphatidylinositol-3-kinase (PI3K)-vakt murine thymoma viral oncogene homolog (AKT) pathway that is well implicated in cell growth, proliferation, survival, apoptosis, among other diverse cellular functions. The identified mutations in these three genes have been shown to lead to gain of function and activation of the PI3K-AKT pathway. Germline and postzygotic mutations of PIK3CA and other PI3K-AKT-mTOR pathway genes have also been identified in several other overgrowth syndromes, highlighting the key role of this signaling pathway in normal development and pathophysiology of a large group of congenital anomalies.
Insights
Megalencephaly syndromes like MPPH and MCAP involve brain overgrowth and developmental abnormalities. Genetic mutations in PIK3R2, AKT3, and PIK3CA genes activate the PI3K-AKT pathway, contributing to these conditions.
Area of Science:
- Genetics
- Developmental Biology
- Neurology
Background:
- Megalencephaly-polymicrogyria-polydactyly-hydrocephalus (MPPH) and megalencephaly-capillary malformation (MCAP) are distinct but overlapping brain overgrowth disorders.
- Both conditions present with megalencephaly, hydrocephalus, Chiari malformation, and polymicrogyria.
- MCAP additionally features capillary malformations and syndactyly, while MPPH typically lacks these vascular or somatic anomalies.
Purpose of the Study:
- To identify the genetic underpinnings of MPPH and MCAP syndromes.
- To investigate the role of the PI3K-AKT signaling pathway in these brain overgrowth disorders.
Main Methods:
- Genetic analysis of individuals diagnosed with MPPH and MCAP syndromes.
- Identification of de novo germline and postzygotic mutations in key genes.
Main Results:
- De novo germline mutations in PIK3R2 and AKT3 were identified in MPPH cases.
- Postzygotic, mosaic, and rare germline mutations in PIK3CA were found in MCAP cases.
- Mutations in these genes lead to the activation of the PI3K-AKT pathway, crucial for cell growth and development.
Conclusions:
- The PI3K-AKT signaling pathway is critically involved in the pathophysiology of MPPH and MCAP.
- Genetic mutations affecting this pathway are a common mechanism underlying various congenital overgrowth syndromes.
- Understanding these genetic links provides insight into brain development and related anomalies.
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