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Severe presentation of WDR62 mutation: is there a role for modifying genetic factors?
Cathryn J Poulton1, Rachel Schot, Katja Seufert
1Department of Clinical Genetics, Erasmus Medical Center, Rotterdam, Germany.
Abstract:
Mutations in WDR62 are associated with primary microcephaly; however, they have been reported with wide phenotypic variability. We report on six individuals with novel WDR62 mutations who illustrate this variability and describe three in greater detail. Of the three, one lacks neuromotor development and has severe pachygyria on MRI, another has only delayed speech and motor development and moderate polymicrogyria, and the third has an intermediate phenotype. We observed a rare copy number change of unknown significance, a 17q25qter duplication, in the first severely affected individual. The 17q25 duplication included an interesting candidate gene, tubulin cofactor D (TBCD), crucial in microtubule assembly and disassembly. Sequencing of the non-duplicated allele showed a TBCD missense mutation, predicted to cause a deleterious p.Phe1121Val substitution. Sequencing of a cohort of five patients with WDR62 mutations, including one with an identical mutation and different phenotype, plus 12 individuals with diagnosis of microlissencephaly and another individual with mild intellectual disability (ID) and a 17q25 duplication, did not reveal TBCD mutations. However, immunostaining with tubulin antibodies of cells from patients with both WDR62 and TBCD mutation showed abnormal tubulin network when compared to controls and cells with only the WDR62 mutation. Therefore, we propose that genetic factors contribute to modify the severity of the WDR62 phenotype and, although based on suggestive evidence, TBCD could function as one of such factors.
Insights
Novel mutations in WDR62 cause primary microcephaly with variable symptoms. Tubulin cofactor D (TBCD) mutations may modify WDR62-related microcephaly severity, impacting tubulin networks.
Area of Science:
- Genetics
- Neuroscience
- Developmental Biology
Background:
- Mutations in the WDR62 gene are linked to primary microcephaly, a condition characterized by a small brain size.
- Reported WDR62 mutations exhibit significant phenotypic variability, making diagnosis and prognosis challenging.
Observation:
- This study details six individuals with new WDR62 mutations, highlighting the spectrum of associated neurodevelopmental abnormalities.
- One severely affected individual presented with a 17q25qter duplication encompassing the tubulin cofactor D (TBCD) gene.
- This individual also carried a TBCD missense mutation on the other allele, predicted to be deleterious.
Findings:
- While TBCD mutations were not found in other WDR62-related microcephaly cohorts, cells from patients with both WDR62 and TBCD mutations showed abnormal tubulin networks.
- This suggests that TBCD may influence the severity of WDR62-associated phenotypes.
Implications:
- Genetic modifiers, such as TBCD, likely play a role in the phenotypic variability observed in WDR62 mutations.
- Understanding these modifying factors is crucial for improved diagnosis and potential therapeutic strategies for microcephaly.