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Symmetry-breaking in an edgeless epithelium by Fat2-regulated MT polarity

机译:由Fat2调节的MT极性在无边缘上皮中对称性破坏

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摘要

Planar cell polarity (PCP) information is a critical determinant of organ morphogenesis. While PCP in bounded epithelial sheets is increasingly well-understood, how PCP is organized in tubular and acinar tissues is not. Drosophila egg chambers (follicles) are an acinus-like ‘edgeless epithelium’ and exhibit a continuous, circumferential PCP that does not depend on pathways active in bounded epithelia; this follicle PCP directs formation of an ellipsoid rather than a spherical egg. Here we apply a novel imaging algorithm to ‘unroll’ the entire 3D tissue surface and comprehensively analyze PCP onset. This approach traces chiral symmetry-breaking to plus-end polarity of microtubules in the germarium, well before follicles form and rotate. PCP germarial microtubules provide chiral information that predicts the direction of whole-tissue rotation as soon as independent follicles form. Concordant microtubule polarity, but not microtubule alignment, requires the atypical cadherin Fat2, which acts at an early stage to translate plus-end bias into coordinated actin-mediated collective cell migration. Because microtubules are not required for PCP or migration after follicle rotation initiates, while dynamic actin and extracellular matrix are, polarized microtubules lie at the beginning of a handoff mechanism that passes early chiral PCP of the cytoskeleton to a supracellular planar polarized extracellular matrix and elongates the organ.
机译:平面细胞极性(PCP)信息是器官形态发生的关键决定因素。尽管有界上皮片中的PCP越来越为人所理解,但PCP在肾小管和腺泡组织中的组织方式却不是这样。果蝇的卵腔(卵泡)是一个类似腺泡的“无边缘上皮”,并表现出连续的,周向的PCP,其不依赖于在上皮细胞中活动的途径。该卵泡PCP指导卵形而不是球形卵的形成。在这里,我们应用一种新颖的成像算法来“展开”整个3D组织表面并全面分析PCP发作。这种方法可以在卵泡形成和旋转之前,将手性对称性破坏追溯到菌种中微管的正向极性。 PCP细菌微管提供手性信息,一旦独立卵泡形成,该手性信息可预测整个组织旋转的方向。一致的微管极性(而不是微管对齐)需要非典型钙粘蛋白Fat2,其在早期阶段就将正向偏向转化为协同的肌动蛋白介导的集体细胞迁移。由于卵泡旋转开始后PCP或迁移不需要微管,而动态肌动蛋白和细胞外基质则是必需的,因此极化微管位于切换机制的开始,该机制将细胞骨架的早期手性PCP传递至细胞上平面极化的细胞外基质并拉长器官。

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