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Germline gain-of-function mutations of ALK disrupt central nervous system development
Loïc de Pontual1, Dania Kettaneh, Christopher T Gordon
1Université Paris Descartes, INSERM U-781, France.
Abstract:
Neuroblastoma (NB) is a frequent embryonal tumor of sympathetic ganglia and adrenals with extremely variable outcome. Recently, somatic amplification and gain-of-function mutations of the anaplastic lymphoma receptor tyrosine kinase (ALK) gene, either somatic or germline, were identified in a significant proportion of NB cases. Here we report a novel syndromic presentation associating congenital NB with severe encephalopathy and abnormal shape of the brainstem on brain MRI in two unrelated sporadic cases harboring de novo, germline, heterozygous ALK gene mutations. Both mutations are gain-of-function mutations that have been reported in NB and NB cell lines. These observations further illustrate the role of oncogenes in both tumour predisposition and normal development, and shed light on the pleiotropic and activity-dependent role of ALK in humans. More generally, missing germline mutations relative to the spectrum of somatic mutations reported for a given oncogene may be a reflection of severe effects during embryonic development, and may prompt mutation screening in patients with extreme phenotypes.
Insights
Anaplastic lymphoma kinase (ALK) gene mutations are linked to neuroblastoma and severe developmental issues. Germline mutations in ALK may cause severe embryonic effects, impacting neurodevelopment and tumor predisposition.
Area of Science:
- Oncology
- Human Genetics
- Developmental Biology
Background:
- Neuroblastoma (NB) is a common pediatric cancer with variable outcomes.
- Anaplastic lymphoma kinase (ALK) gene alterations (somatic or germline) are found in a notable percentage of NB cases.
Observation:
- Two unrelated patients presented with congenital NB, severe encephalopathy, and abnormal brainstem shape on MRI.
- These patients harbored de novo, germline, heterozygous ALK gene mutations, identified as gain-of-function.
Findings:
- Germline ALK mutations can manifest as a syndromic presentation including congenital neuroblastoma and severe encephalopathy.
- Gain-of-function ALK mutations play a role in both tumor predisposition and normal human development.
Implications:
- The spectrum of germline mutations for an oncogene may be underestimated due to severe embryonic lethality.
- Screening for germline ALK mutations is warranted in patients with extreme phenotypes, such as congenital NB with encephalopathy.
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