bioRxiv · 10.1101/201814
A de novo missense mutation in TUBA1A results in reduced neural progenitor survival and differentiation
Abstract
Mutations in tubulins have been implicated in numerous human neurobiological disorders collectively known as \"tubulinopathies.\" We identified a patient with severe cortical dysgenesis and a novel de novo heterozygous missense mutation in Tubulin Alpha 1a (TUBA1A, c.1225 G>T). Induced pluripotent stem cells derived from this individual were differentiated into two dimensional neural rosette clusters to identify underlying mechanisms for the severe cortical dysgenesis phenotype. Patient-derived clones showed evidence of impaired neural progenitor survival and differentiation with abnormal neural rosette formation, increases in cell death, and fewer post-mitotic neurons. These features correlate with the drastically underdeveloped cortical tissues seen in the proband. This is the first experimental evidence in human tissue suggesting a mechanism underlying the role for TUBA1A in cortical development.\n\nSUMMARY STATEMENTVariants in tubulin genes often lead to severe congenital brain malformations. Here we identify a new mutation in TUBA1A and use iPSCS to show this alters proliferation, differentiation and survival of neural progenitors.
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Driver, A., Pitstick, A., Mayhew, C., Kline-Fath, B., Saal, H., Stottmann, R.. 2017-10-16. A de novo missense mutation in TUBA1A results in reduced neural progenitor survival and differentiation. https://doi.org/10.1101/201814
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