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Beta tubulin isoforms are not interchangeable for rescuing impaired radial migration due to Tubb3 knockdown

机译:Beta Tubulin亚型不可互换,以挽救由于Tubb3基因敲低造成的径向迁移受损

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Over the last years, the critical role of cytoskeletal proteins in cortical development including neuronal migration as well as in neuronal morphology has been well established. Inputs from genetic studies were provided through the identification of several mutated genes encoding either proteins associated with microtubules (DCX, LIS1, KIF2A, KIF5C, DYNC1H1) or tubulin subunits (TUBA1A, TUBB2B, TUBB5 and TUBG1), in malformations of cortical development (MCD). We also reported the identification of missense mutations in TUBB3, the postmitotic neuronal specific tubulin, in six different families presenting either polymicrogyria or gyral disorganization in combination with cerebellar and basal ganglial abnormalities. Here, we investigate further the association between TUBB3 mutations and MCDs by analyzing the consequences of Tubb3 knockdown on cortical development in mice. Using the in utero-electroporation approach, we demonstrate that Tubb3 knockdown leads to delayed bipolar morphology and radial migration with evidence, suggesting that the neuronal arrest is a transient phenomenon overcome after birth. Silenced blocked cells display a round-shape and decreased number of processes and a delay in the acquisition of the bipolar morphology. Also, more Tbr2 positive cells are observed, although less cells express the proliferation marker Ki67, suggesting that Tubb3 inactivation might have an indirect effect on intermediate progenitor proliferation. Furthermore, we show by rescue experiments the non-interchangeability of other beta-tubulins which are unable to rescue the phenotype. Our study highlights the critical and specific role of Tubb3 on the stereotyped morphological changes and polarization processes that are required for initiating radial migration to the cortical plate.
机译:在过去的几年中,细胞骨架蛋白在包括神经元迁移以及神经元形态在内的皮质发育中的关键作用已经得到了公认。遗传研究的输入是通过鉴定几种与皮质发育畸形(MCD)相伴的微管蛋白(DCX,LIS1,KIF2A,KIF5C,DYNC1H1)或微管蛋白亚基(TUBA1A,TUBB2B,TUBB5和TUBG1)突变的基因而提供的)。我们还报告了在六个不同的家族中,表现为多小神经生殖或回旋紊乱并伴有小脑和基底神经节异常的TUBB3(有丝分裂后神经元特异性微管蛋白)中的错义突变。在这里,我们通过分析Tubb3基因敲低对小鼠皮质发育的影响,进一步研究TUBB3突变与MCD之间的关联。使用子宫内电穿孔方法,我们证明Tubb3敲低导致延迟的双极形态和放射状迁移,并有证据表明神经元停滞是出生后克服的短暂现象。沉默的封闭细胞显示为圆形,过程数量减少,双极性形态的采集延迟。同样,观察到更多的Tbr2阳性细胞,尽管表达增殖标记Ki67的细胞更少,这表明Tubb3的失活可能对中间祖细胞的增殖有间接的影响。此外,我们通过救援实验显示了其他无法挽救该表型的β-微管蛋白的不可互换性。我们的研究强调了Tubb3在定型形态变化和极化过程中的关键和特定作用,而定型形态变化和极化过程是开始径向迁移至皮层板所需的。

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