CMA analysis identifies homozygous deletion of MCPH1 in 2 brothers with primary Microcephaly-1

Morteza Hemmat1, Melissa J Rumple2, Loretta W Mahon1

  • 1Quest Diagnostics Nichols Institute, 33608 Ortega Highway, San Juan Capistrano, CA USA.

Molecular Cytogenetics
|September 8, 2017
PubMed
Abstract

Insights

Homozygous microcephalin gene (MCPH1) deletions cause primary microcephaly and intellectual disability. Larger deletions, like the one found in this Hispanic family, are linked to more severe phenotypes than point mutations.

Area of Science:

  • Genetics
  • Neuroscience
  • Developmental Biology

Background:

  • Primary microcephaly and intellectual disability can result from mutations in the microcephalin gene (MCPH1).
  • Previous research suggests that the extent of genomic alterations in MCPH1 influences phenotype severity, particularly in Asian families.
  • This study investigates a consanguineous Hispanic family with primary microcephaly, focusing on chromosome microarray findings.

Observation:

  • A Hispanic proband presented with microcephaly, developmental delay, and distinct facial features.
  • Brain MRI revealed abnormalities including a small interpeduncular cistern lesion and prominent arachnoid granulation.
  • The proband had a sibling with a similar phenotype, while parents and an older sibling were unaffected.

Findings:

  • SNP-based CMA identified a homozygous 250-kb microdeletion in the MCPH1 gene (exons 1-8) in the proband and affected sibling.
  • The deletion segregated with the observed microcephaly and intellectual disability.
  • Regions of homozygosity (ROHs) were also noted in affected individuals, potentially contributing to the phenotype.

Implications:

  • This study confirms homozygous MCPH1 exon deletions as a cause of primary microcephaly and intellectual disability in a Hispanic family.
  • The findings support the hypothesis that deletions encompassing multiple exons of MCPH1 lead to a more severe clinical presentation compared to point mutations.
  • This research highlights the importance of considering copy number variations in the genetic diagnosis of microcephaly and intellectual disability.

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