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Mutations in the beta-tubulin gene TUBB2B result in asymmetrical polymicrogyria

机译:β微管蛋白基因TUBB2B中的突变导致不对称的多菌丝

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摘要

Polymicrogyria is a relatively common but poorly understood defect of cortical development characterized by numerous small gyri and a thick disorganized cortical plate lacking normal lamination. Here we report de novo mutations in a P-tubulin gene, TUBB2B, in four individuals and a 27-gestational-week fetus with bilateral asymmetrical polymicrogyria. Neuropathological examination of the fetus revealed an absence of cortical lamination associated with the presence of ectopic neuronal cells in the white matter and in the leptomeningeal spaces due to breaches in the pial basement membrane. In utero RNAi-based inactivation demonstrates that TUBB2B is required for neuronal migration. We also show that two disease-associated mutations lead to impaired formation of tubulin heterodimers. These observations, together with previous data, show that disruption of microtubule-based processes underlies a large spectrum of neuronal migration disorders that includes not only lissencephaly and pachygyria, but also polymicrogyria malformations.
机译:polymicrogyria是一种相对普遍但皮质理解不足的皮质发育缺陷,其特征是许多小回旋和厚厚的无序皮质层缺乏正常的覆膜。在这里,我们报道了在四名个体和一个双胎不对称多尿小儿的27胎周胎儿的P-微管蛋白基因TUBB2B中的从头突变。胎儿的神经病理学检查显示,由于皮层基底膜破裂,在白质和软脑膜间隙中存在与异位神经元细胞相关的皮质层合。在子宫内基于RNAi的失活表明TUBB2B是神经元迁移所必需的。我们还表明,与疾病相关的两个突变导致微管蛋白异二聚体形成受损。这些观察结果与以前的数据一起表明,基于微管的过程破坏是神经元迁移疾病的大范围基础,不仅包括小脑畸形和早发性坐骨神经节,而且还包括多发性小脑畸形。

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