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Novel Pathogenic Mutation Mapping of ASPM Gene in Consanguineous Pakistani Families with Primary Microcephaly
T Batool1, S Irshad1, K Mahmood2
1University of the Punjab, School of Biochemistry and Biotechnology - SBB, Lahore, Pakistan.
Abstract:
Autosomal recessive primary microcephaly (MCPH) is a neurodevelopmental disorder characterized by a congenitally reduced head circumference (-3 to -5 SD) and non-progressive intellectual disability. The objective of the study was to evaluate pathogenic mutations in the ASPM gene to understand etiology and molecular mechanism of primary microcephaly. Blood samples were collected from various families across different remote areas of Pakistan from February 2017 to May 2019 who were identified to be affected with primary microcephaly. DNA extraction was performed using the salting-out method; the quality and quantity of DNA were evaluated using spectrophotometry and 1% agarose gel electrophoresis, respectively in University of the Punjab. Mutation analysis was performed by whole exome sequencing from the Cologne Center for Genomics, University of Cologne. Sanger sequencing was done in University of the Punjab to confirm the pathogenic nature of mutation. A novel 4-bp deletion mutation c.3877_3880delGAGA was detected in exon 17 of the ASPM gene in two primary microcephaly affected families (A and B), which resulted in a frame shift mutation in the gene followed by truncated protein synthesis (p.Glu1293Lysfs*10), as well as the loss of the calmodulin-binding IQ domain and the Armadillo-like domain in the ASPM protein. Using the in-silico tools Mutation Taster, PROVEAN, and PolyPhen, the pathogenic effect of this novel mutation was tested; it was predicted to be "disease causing," with high pathogenicity scores. One previously reported mutation in exon 24 (c.9730C>T) of the ASPM gene resulting in protein truncation (p.Arg3244*) was also observed in family C. Mutations in the ASPM gene are the most common cause of MCPH in most cases. Therefore, enrolling additional affected families from remote areas of Pakistan would help in identifying or mapping novel mutations in the ASPM gene of primary microcephaly.
Insights
Autosomal recessive primary microcephaly (MCPH) is linked to ASPM gene mutations. A novel deletion in the ASPM gene was identified in Pakistani families, causing a truncated protein and contributing to MCPH etiology.
Area of Science:
- Neurogenetics
- Developmental Biology
- Human Genetics
Background:
- Autosomal recessive primary microcephaly (MCPH) is a neurodevelopmental disorder characterized by a significantly reduced head circumference and intellectual disability.
- Mutations in the ASPM gene are a common cause of MCPH, impacting brain development.
Purpose of the Study:
- To investigate pathogenic mutations in the ASPM gene in Pakistani families affected by primary microcephaly.
- To elucidate the molecular mechanisms underlying MCPH caused by ASPM gene variations.
Main Methods:
- Whole exome sequencing was employed to identify mutations in affected families.
- Sanger sequencing was used for validation of identified mutations.
- In-silico tools (Mutation Taster, PROVEAN, PolyPhen) were utilized to predict the pathogenicity of novel mutations.
Main Results:
- A novel 4-bp deletion (c.3877_3880delGAGA) in exon 17 of the ASPM gene was identified in two families, leading to a frameshift and truncated protein (p.Glu1293Lysfs*10).
- This mutation results in the loss of critical functional domains (calmodulin-binding IQ and Armadillo-like domains) in the ASPM protein.
- A previously reported mutation (c.9730C>T) in exon 24 was also observed in another family.
Conclusions:
- ASPM gene mutations are a significant cause of primary microcephaly in the studied Pakistani population.
- The novel c.3877_3880delGAGA mutation is pathogenic and contributes to MCPH by disrupting ASPM protein function.
- Further studies with additional families are warranted to identify more ASPM mutations in primary microcephaly.
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