首页> 外文期刊>Neuron >Mouse inscuteable induces apical-basal spindle orientation to facilitate intermediate progenitor generation in the developing neocortex.
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Mouse inscuteable induces apical-basal spindle orientation to facilitate intermediate progenitor generation in the developing neocortex.

机译:老鼠可孕育的诱导顶基-纺锤体的取向,以促进中间皮祖细胞在发育中的新皮层中的生成。

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Neurons in the mammalian neocortex arise from asymmetric divisions of progenitors residing in the ventricular zone. While in most progenitor divisions, the mitotic spindle is parallel to the ventricular surface, some progenitors reorient the spindle and divide in oblique orientations. Here, we use conditional deletion and overexpression of mouse Inscuteable (mInsc) to analyze the relevance of spindle reorientation in cortical progenitors. Mutating mInsc almost abolishes oblique and vertical mitotic spindles, while mInsc overexpression has the opposite effect. Our data suggest that oblique divisions are essential for generating the correct numbers of neurons in all cortical layers. Using clonal analysis, we demonstrate that spindle orientation affects the rate of indirect neurogenesis, a process where progenitors give rise to basal progenitors, which in turn divide symmetrically into two differentiating neurons. Our results indicate that the orientation of progenitor cell divisions is important for correct lineage specification in the developing mammalian brain.
机译:哺乳动物新皮层中的神经元是由位于心室区的祖细胞的不对称分裂引起的。在大多数祖细胞分裂中,有丝分裂纺锤体与心室表面平行,但某些祖细胞使纺锤体重新定向并沿倾斜方向分裂。在这里,我们使用有条件的删除和鼠标Inscuteable(mInsc)的过表达来分析皮质祖细胞中纺锤体定向的相关性。突变mInsc几乎消除了倾斜和垂直的有丝分裂纺锤体,而mInsc的过表达则相反。我们的数据表明,倾斜分裂对于在所有皮质层中生成正确数量的神经元至关重要。使用克隆分析,我们证明纺锤体定向会影响间接神经发生的速率,在此过程中,祖细胞会产生基础祖细胞,而基础祖细胞又会对称地分为两个不同的神经元。我们的结果表明,祖细胞分裂的方向对于发育中的哺乳动物大脑中正确的谱系规范很重要。

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