Variants in PTEN Are Associated With a Diverse Spectrum of Cortical Dysplasia
Emily Shelkowitz1, Nicholas V Stence2, Ilana Neuberger2
1Department of Pediatrics, University of Washington, Seattle, Washington.
Background:
Inactivating mutations in PTEN are among the most common causes of megalencephaly. Activating mutations in other nodes of the PI3K/AKT/MTOR signaling pathway are recognized as a frequent cause of cortical brain malformations. Only recently has PTEN been associated with cortical malformations, and analyses of their prognostic significance have been limited.
Methods:
Retrospective neuroimaging analysis and detailed chart review were conducted on 20 participants identified with pathogenic or likely pathogenic mutations in PTEN and a cortical brain malformation present on brain magnetic resonance imaging.
Results:
Neuroimaging analysis revealed four main cerebral phenotypes-hemimegalencephaly, focal cortical dysplasia, polymicrogyria (PMG), and a less severe category, termed "macrocephaly with complicated gyral pattern" (MCG). Although a high proportion of participants (90%) had neurodevelopmental findings on presentation, outcomes varied and were favorable in over half of participants. Consistent with prior work, 39% of participants had autism spectrum disorder and 19% of participants with either pure-PMG or pure-MCG phenotypes had epilepsy. Megalencephaly and systemic overgrowth were common, but other systemic features of PTEN-hamartoma tumor syndrome were absent in over one-third of participants.
Conclusions:
A spectrum of cortical dysplasias is present in individuals with inactivating mutations in PTEN. Future studies are needed to clarify the prognostic significance of each cerebral phenotype, but overall, we conclude that despite a high burden of neurodevelopmental disease, long-term outcomes may be favorable. Germline testing for PTEN mutations should be considered in cases of megalencephaly and cortical brain malformations even in the absence of other findings, including cognitive impairment.
Insights
PTEN mutations cause megalencephaly and brain malformations. While neurodevelopmental issues are common, outcomes can be favorable, suggesting PTEN testing for these conditions.
Area of Science:
- Genetics and Neurology
- Molecular Biology
- Developmental Neuroscience
Background:
- Inactivating PTEN mutations are common causes of megalencephaly.
- Activating mutations in the PI3K/AKT/MTOR pathway frequently cause cortical brain malformations.
- PTEN's association with cortical malformations is recent, with limited prognostic data.
Purpose of the Study:
- To analyze cerebral phenotypes and outcomes in individuals with PTEN mutations and cortical brain malformations.
- To investigate the spectrum of cortical dysplasias associated with PTEN inactivating mutations.
- To assess the prognostic significance of PTEN-related cortical malformations.
Main Methods:
- Retrospective analysis of neuroimaging in 20 participants with pathogenic PTEN mutations.
- Detailed chart review of clinical and genetic data.
- Classification of cerebral phenotypes including hemimegalencephaly, focal cortical dysplasia, polymicrogyria (PMG), and macrocephaly with complicated gyral pattern (MCG).
Main Results:
- Four cerebral phenotypes identified: hemimegalencephaly, focal cortical dysplasia, PMG, and MCG.
- 90% of participants presented with neurodevelopmental findings; over half had favorable outcomes.
- Autism spectrum disorder occurred in 39%; epilepsy in 19% of pure PMG or MCG cases. Systemic features of PTEN-hamartoma tumor syndrome were absent in over one-third.
Conclusions:
- Individuals with PTEN mutations exhibit a spectrum of cortical dysplasias.
- Despite a high neurodevelopmental disease burden, long-term outcomes can be favorable.
- Germline PTEN mutation testing is recommended for megalencephaly and cortical brain malformations, even without other symptoms.
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