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Two unique TUBB3 mutations cause both CFEOM3 and malformations of cortical development
Mary C Whitman1,2,3, Caroline Andrews3,4,5,6, Wai-Man Chan3,4,5,6,7
1Department of Ophthalmology, Boston Children's Hospital, Boston, Massachusetts.
American Journal of Medical Genetics. Part A
|December 8, 2015
Summary
Novel mutations in the beta tubulin gene (TUBB3) cause both congenital eye muscle fibrosis (CFEOM3) and cortical development malformations (MCD). These findings suggest a unified mechanism of microtubule dysfunction in these distinct neurological disorders.
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Missense mutations in the beta tubulin isotype 3 (TUBB3) gene have been linked to distinct neurological conditions: malformations of cortical development (MCD) and Congenital Fibrosis of the Extraocular Muscles type 3 (CFEOM3).
- Previously, it was hypothesized that different sets of TUBB3 mutations might affect microtubule function uniquely, leading to these separate phenotypes.
Observation:
- This study reports two novel de novo heterozygous TUBB3 substitutions (G71R and G98S) in four patients exhibiting both MCD and syndromic CFEOM3.
- Patients presented with moderate to severe CFEOM3, nystagmus, torticollis, developmental delay, intellectual disability, and social deficits.
Findings:
- Neuroimaging revealed significant brain abnormalities, including defective cortical gyration, corpus callosum and anterior commissure hypoplasia/agenesis, and malformations of the hippocampi, thalami, basal ganglia, cerebella, brainstem, and cranial nerves.
- These novel TUBB3 substitutions bridge the previously distinct phenotypic categories of MCD and CFEOM3.
- The findings implicate a shared underlying microtubule dysfunction in both conditions.
Implications:
- These discoveries suggest that TUBB3 mutations can lead to a combined spectrum of neurological defects, challenging the notion of distinct disease mechanisms.
- Understanding the shared microtubule dysfunction offers new avenues for research into the pathogenesis of both CFEOM3 and MCD.
- This research highlights the critical role of TUBB3 in both ocular motor development and cortical formation.
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