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首页> 外文期刊>Nature cell biology >Directional Notch trafficking in Sara endosomes during asymmetric cell division in the spinal cord
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Directional Notch trafficking in Sara endosomes during asymmetric cell division in the spinal cord

机译:脊髓不对称细胞分裂过程中Sara内体的定向缺口运输

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Asymmetric division of neural precursor cells contributes to the generation of a variety of neuronal types. Asymmetric division is mediated by the asymmetric inheritance of fate determinants by the two daughter cells(1,2). In vertebrates, asymmetric fate determinants, such as Par3 and Mib, are only now starting to be identified(3,4). Here we show that, during mitosis of neural precursors in zebrafish, directional trafficking of Sara endosomes to one of the daughters can function as such a determinant. In asymmetric lineages, where one daughter cell becomes a neuron (n cell) whereas the other divides again to give rise to two neurons (p cell), we found that the daughter that inherits most of the Sara endosomes acquires the p fate. Sara endosomes carry an endocytosed pool of the Notch ligand DeltaD, which is thereby itself distributed asymmetrically. Sara and Notch are both essential for cell fate assignation within asymmetric lineages. Therefore, the Sara endosome system determines the fate decision between neuronal differentiation and mitosis in asymmetric lineages and thereby contributes to controlling the number of neural precursors and differentiated neurons during neurogenesis in a vertebrate.
机译:神经前体细胞的不对称分裂有助于多种神经元类型的产生。不对称分裂是由两个子细胞对命运决定簇的不对称遗传介导的(1,2)。在脊椎动物中,不对称的决定因素,例如Par3和Mib,才刚刚被发现(3,4)。在这里,我们表明,在斑马鱼的神经前体的有丝分裂过程中,Sara内体向其中一个女儿的定向运输可以起到决定性作用。在不对称谱系中,一个子细胞变成一个神经元(n个细胞),而另一个又分裂成两个神经元(p细胞),我们发现继承了大部分Sara内体的那个女儿获得了p命运。 Sara内体带有Notch配体DeltaD的内吞池,因此其本身不对称分布。 Sara和Notch对于非对称血统中的细胞命运分配都是必不可少的。因此,Sara内体系统决定了不对称谱系中神经元分化和有丝分裂之间的命运决定,从而有助于控制脊椎动物神经发生过程中神经前体和分化神经元的数量。

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