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A PAR-1–dependent orientation gradient of dynamic microtubulesdirects posterior cargo transport in the Drosophilaoocyte

机译:依赖PAR-1的动态微管取向梯度指导果蝇的后部货物运输卵母细胞

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摘要

Cytoskeletal organization is central to establishing cell polarity in various cellular contexts, including during messenger ribonucleic acid sorting in Drosophila melanogaster oocytes by microtubule (MT)-dependent molecular motors. However, MT organization and dynamics remain controversial in the oocyte. In this paper, we use rapid multichannel live-cell imaging with novel image analysis, tracking, and visualization tools to characterize MT polarity and dynamics while imaging posterior cargo transport. We found that all MTs in the oocyte were highly dynamic and were organized with a biased random polarity that increased toward the posterior. This organization originated through MT nucleation at the oocyte nucleus and cortex, except at the posterior end of the oocyte, where PAR-1 suppressed nucleation. Our findings explain the biased random posterior cargo movements in the oocyte that establish the germline and posterior.
机译:细胞骨架组织是在各种细胞环境中建立细胞极性的关键,包括在果蝇卵母细胞通过依赖微管(MT)的分子马达对信使核糖核酸进行分选的过程中。然而,卵母细胞中MT的组织和动力学仍存在争议。在本文中,我们使用快速的多通道活细胞成像以及新颖的图像分析,跟踪和可视化工具来表征MT极性和动力学,同时对后部货物运输进行成像。我们发现,卵母细胞中的所有MT都是高度动态的,并以向后方增加的偏向随机极性进行组织。该组织起源于卵母细胞核和皮层的MT成核,除了在卵母细胞的后端,PAR-1抑制了成核。我们的发现解释了建立种系和后部的卵母细胞中有偏向的随机后部货物运动。

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