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首页> 外文期刊>Human Molecular Genetics >Mutations in the neuronal ss-tubulin subunit TUBB3 result in malformation of cortical development and neuronal migration defects.
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Mutations in the neuronal ss-tubulin subunit TUBB3 result in malformation of cortical development and neuronal migration defects.

机译:神经元的ss-微管蛋白亚基TUBB3的突变导致皮层发育畸形和神经元迁移缺陷。

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摘要

Mutations in the TUBB3 gene, encoding beta-tubulin isotype III, were recently shown to be associated with various neurological syndromes which all have in common the ocular motility disorder, congenital fibrosis of the extraocular muscle type 3 (CFEOM3). Surprisingly and in contrast to previously described TUBA1A and TUBB2B phenotypes, no evidence of dysfunctional neuronal migration and cortical organization was reported. In our study, we report the discovery of six novel missense mutations in the TUBB3 gene, including one fetal case and one homozygous variation, in nine patients that all share cortical disorganization, axonal abnormalities associated with pontocerebellar hypoplasia, but with no ocular motility defects, CFEOM3. These new findings demonstrate that the spectrum of TUBB3-related phenotype is broader than previously described and includes malformations of cortical development (MCD) associated with neuronal migration and differentiation defects, axonal guidance and tract organization impairment. Complementary functional studies revealed that the mutated betaIII-tubulin causing the MCD phenotype results in a reduction of heterodimer formation, yet produce correctly formed microtubules (MTs) in mammalian cells. Further to this, we investigated the properties of the MT network in patients' fibroblasts and revealed that MCD mutations can alter the resistance of MTs to depolymerization. Interestingly, this finding contrasts with the increased MT stability observed in the case of CFEOM3-related mutations. These results led us to hypothesize that either MT dynamics or their interactions with various MT-interacting proteins could be differently affected by TUBB3 variations, thus resulting in distinct alteration of downstream processes and therefore explaining the phenotypic diversity of the TUBB3-related spectrum.
机译:最近显示,编码BB-微管蛋白同种型III的TUBB3基因突变与各种神经系统综合征有关,这些综合征均具有共同的眼球运动障碍,3型眼外肌先天性纤维化(CFEOM3)。出乎意料的是,与先前描述的TUBA1A和TUBB2B表型相反,没有报道功能异常的神经元迁移和皮质组织的证据。在我们的研究中,我们报告了TUBB3基因中发现了6个新的错义突变,包括1例胎儿病例和1例纯合变异,这些患者全部有9个皮质皮层紊乱,与小脑发育不全相关的轴突异常但无眼动功能缺陷, CFEOM3。这些新发现表明,TUBB3相关表型的范围比以前描述的要广,并且包括与神经元迁移和分化缺陷,轴突引导和管道组织损伤相关的皮层发育(MCD)畸形。补充功能研究表明,引起MCD表型的突变βIII-微管蛋白导致异二聚体形成的减少,但在哺乳动物细胞中产生正确形成的微管(MTs)。除此之外,我们研究了患者成纤维细胞中MT网络的特性,并发现MCD突变可以改变MT对解聚的抗性。有趣的是,这一发现与在CFEOM3相关突变的情况下观察到的MT稳定性增加形成了鲜明对比。这些结果使我们假设,TUBB3变异可能会不同地影响MT动力学或它们与各种MT相互作用蛋白的相互作用,从而导致下游过程发生明显变化,从而解释了TUBB3相关谱的表型多样性。

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