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首页> 外文期刊>Current Biology: CB >Intra-lineage Fate Decisions Involve Activation of Notch Receptors Basal to the Midbody in Drosophila Sensory Organ Precursor Cells
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Intra-lineage Fate Decisions Involve Activation of Notch Receptors Basal to the Midbody in Drosophila Sensory Organ Precursor Cells

机译:沿血管内的命运局部决定涉及激活Notch受体基础滴注到果蝇感官器官前体细胞中的含量

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Notch receptors regulate cell fate decisions during embryogenesis and throughout adult life. In many cell lineages, binary fate decisions are mediated by directional Notch signaling between the two sister cells produced by cell division. How Notch signaling is restricted to sister cells after division to regulate intra-lineage decision is poorly understood. More generally, where ligand-dependent activation of Notch occurs at the cell surface is not known, as methods to detect receptor activation in vivo are lacking. In Drosophila pupae, Notch signals during cytokinesis to regulate the intra-lineage pIIa/pIIb decision in the sensory organ lineage. Here, we identify two pools of Notch along the pIIa-pIIb interface, apical and basal to the midbody. Analysis of the dynamics of Notch, Delta, and Neuralized distribution in living pupae suggests that ligand endocytosis and receptor activation occur basal to the midbody. Using selective photo-bleaching of GFP-tagged Notch and photo-tracking of photo-convertible Notch, we show that nuclear Notch is indeed produced by receptors located basal to the midbody. Thus, only a specific subset of receptors, located basal to the midbody, contributes to signaling in pIIa. This is the first in vivo characterization of the pool of Notch contributing to signaling. We propose a simple mechanism of cell fate decision based on intra-lineage signaling: ligands and receptors localize during cytokinesis to the new cell-cell interface, thereby ensuring signaling between sister cells, hence intra-lineage fate decision.
机译:缺口受体在胚胎发生期间调节细胞命运决定,以及整个成年生命。在许多细胞谱系中,二进制命运决定是通过细胞分裂产生的两个姐妹细胞之间的定向凹口信号介导的。如何在划分后,南分信令是如何限制在划分的思考,以调节血管内决定很差。更一般地,在细胞表面发生在细胞表面的凹凸依赖性激活的情况下,缺乏检测体内受体活化的方法。在果蝇蛹中,在细胞因子期间的Notch信号来调节感觉器官谱系中的血管内PIIA / PIIB决定。在这里,我们识别沿着PIIA-PIIB界面的两池,顶端和基团的基础。陷波,三角洲和神经化分布的植物动态分析,蛹的缺血性和受体激活对中间体的基础。使用GFP标记的凹口的选择性照片和光敞开的凹口的照片漂白,我们表明核缺口确实由位于山体的受体产生的受体。因此,仅位于仲比体的基础上的特定受体子集有助于PIIA中的信号。这是第一个陷阱池池的第一个表征贡献给信号传导。我们提出了一种基于基于血管内信号传导的细胞命运决策的简单机制:配体和受体在细胞因子期间定位到新的细胞单元界面,从而确保姐妹细胞之间的信令,因此沿血管内的命运决策。

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