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The endoplasmic reticulum is partitioned asymmetrically during mitosis before cell fate selection in proneuronal cells in the early Drosophila embryo

机译:在早期的果蝇胚胎中的细胞命运选择之前,内质网在细胞命运中的细胞命运选择之前是不对称的分配的

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Asymmetric cell division is the primary mechanism to generate cellular diversity, and it relies on the correct partitioning of cell fate determinants. However, the mechanism by which these determinants are delivered and positioned is poorly understood, and the upstream signal to initiate asymmetric cell division is unknown. Here we report that the endoplasmic reticulum (ER) is asymmetrically partitioned during mitosis in epithelial cells just before delamination and selection of a proneural cell fate in the early Drosophila embryo. At the start of gastrulation, the ER divides asymmetrically into a population of asynchronously dividing cells at the anterior end of the embryo. We found that this asymmetric division of the ER depends on the highly conserved ER membrane protein Jagunal (Jagn). RNA inhibition of jagn just before the start of gastrulation disrupts this asymmetric division of the ER. In addition, jagn-deficient embryos display defects in apical-basal spindle orientation in delaminated embryonic neuroblasts. Our results describe a model in which an organelle is partitioned asymmetrically in an otherwise symmetrically dividing cell population just upstream of cell fate determination and updates previous models of spindle-based selection of cell fate during mitosis.
机译:不对称细胞分裂是产生蜂窝分集的主要机制,并且依赖于细胞命运决定簇的正确分区。然而,递送和定位这些决定簇的机制是较差的,并且上游信号引发不对称细胞分裂是未知的。在这里,我们认为内质网(ER)在上皮细胞中的含量在分层和选择早期的果蝇胚胎中的损伤性细胞命运中是不对称的。在散热器开始时,ER在胚胎前端的异步分开细胞中不对称地分成群体。我们发现,ER的这种不对称划分取决于高度保守的ER膜蛋白Jagunal(Jagn)。在乳化开始之前的jagn的RNA抑制破坏了er的这种不对称分裂。此外,在分层胚胎神经细胞中缺乏缺陷型胚胎显示缺陷型基底主轴取向。我们的结果描述了一种模型,其中细胞器在恰好在细胞命运测定的上游的其他对称分开的细胞群中不对称地分配,并在有丝分裂期间更新基于主轴的细胞命运的先前模型。

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