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Early-onset epileptic encephalopathy and severe developmental delay in an association with de novo double mutations in and . | LitMetric

AI Article Synopsis

  • Advancements in exome-wide sequencing are helping to identify numerous genes linked to early-onset epileptic encephalopathy and neurodevelopmental disorders, suggesting common molecular pathways for these conditions.
  • A case study of a 45-year-old woman with neurofibromatosis type 1 and severe developmental issues revealed de novo mutations and potential interactions between NF1 and the MAGEL2 gene.
  • Research indicates that neurons derived from patients with NF1 show significantly reduced expression of specific genes, implying that mutations can disrupt the regulation of other genes involved in neurodevelopmental disorders.

Article Abstract

Advance in the exome-wide sequencing analysis contributes to identifying hundreds of genes that are associated with early-onset epileptic encephalopathy and neurodevelopmental disorders. On the basis of massive sequencing data, functional interactions among different genes are suggested to explain the common molecular pathway underlying the pathogenic process of these disorders. However, the relevance of such interactions with the phenotypic severity or variety in an affected individual remains elusive. In this report, we present a 45-year-old woman with neurofibromatosis type 1 (NF1), infantile-onset epileptic encephalopathy, and severe developmental delay. Whole-exome sequencing identified de novo pathogenic mutations in and the Schaaf-Yang syndrome-associated gene, . Literature-curated interaction data predicted that NF1 and MAGEL2 proteins were closely connected in this network via their common interacting proteins. Direct conversion of fibroblasts into neurons in vitro showed that neuronal cells from 9 patients with NF1 expressed significantly lower levels of (54%, p = 0.0047) than those from healthy individuals. These data provide the first evidence that pathogenic mutations of deregulate the expression of other neurodevelopmental disease-associated genes. De novo mutations in multiple genes may lead to severe developmental phenotypes through their cumulative effects or synergistic interactions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5839317PMC
http://dx.doi.org/10.1002/epi4.12085DOI Listing

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