Molecular and phenotypic spectrum of ASPM-related primary microcephaly: Identification of eight novel mutations
Mohamed S Abdel-Hamid1, Manal F Ismail2, Hebatallh A Darwish2
1Medical Molecular Genetics Department, Human Genetics and Genome Research Division, National Research Centre, Cairo, Egypt.
Abstract:
Autosomal recessive primary microcephaly (MCPH) is an abnormal proliferation of neurons during brain development that leads to a small brain size but architecturally normal in most instances. Mutations in the ASPM gene have been identified to be the most prevalent. Thirty-seven patients from 30 unrelated families with a clinical diagnosis of MCPH were enrolled in this study. Screening of ASPM gene mutations was performed by targeted linkage analysis followed by direct sequencing. Thirteen protein truncating mutations of the ASPM were identified in 15 families (50%), eight of which were novel mutations. The mutations detected were eight nonsense, four frameshift, and one splice site. Two of these mutations (p.R1327* and p.R3181*) were recurrent and shared similar haplotypes suggesting founder effect. Patients with ASPM mutations had mild to severe intellectual disability and variable degrees of simplified gyral pattern and small frontal lobe. In addition, hypoplasia of corpus callosum (18 patients), mildly small cerebellar vermis (10 patients), and relatively small pons (13 patients) were found in 85.7%, 47.6%, and 61.9%, respectively. Furthermore, one patient had porencephaly and another had a small midline cyst. Epilepsy was documented in two patients (9.5%). Non-neurologic abnormalities consisted of growth retardation (four patients), and co-incidental association of oculo-cutaneous albinism (one patient). Our study expands the mutation spectrum of ASPM. Moreover, the simplified gyral pattern and small frontal lobe together with hypoplastic corpus callosum, small cerebellum and pons enable ASPM mutated patients to be distinguished. © 2016 Wiley Periodicals, Inc.
Insights
Mutations in the ASPM gene cause primary microcephaly (MCPH), a condition leading to a small brain size. This study identified new ASPM mutations and specific brain abnormalities in patients with MCPH.
Area of Science:
- Genetics
- Neuroscience
- Developmental Biology
Background:
- Autosomal recessive primary microcephaly (MCPH) is a neurodevelopmental disorder characterized by reduced brain size.
- Mutations in the ASPM gene are a common cause of MCPH.
Observation:
- This study analyzed 37 patients from 30 families with MCPH.
- ASPM gene mutations were screened using linkage analysis and direct sequencing.
- Clinical and neuroimaging data were collected for all patients.
Findings:
- Thirteen protein-truncating ASPM mutations were identified in 15 families, including eight novel mutations.
- Patients exhibited intellectual disability, simplified gyral patterns, small frontal lobes, and frequently had corpus callosum hypoplasia, small cerebellar vermis, and small pons.
- Associated findings included epilepsy, growth retardation, and oculo-cutaneous albinism in one patient.
Implications:
- This research expands the known spectrum of ASPM mutations.
- Specific neuroimaging features in ASPM-mutated patients can aid in diagnosis.
- Understanding genotype-phenotype correlations is crucial for MCPH patient management.
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