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Unique and Overlapping Functions of Formins Frl and DAAM During Ommatidial Rotation and Neuronal Development in Drosophila

机译:果蝇的眼轮旋转和神经元发育过程中Formins Frl和DAAM的独特和重叠功能

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摘要

The noncanonical Frizzled/planar cell polarity (PCP) pathway regulates establishment of polarity within the plane of an epithelium to generate diversity of cell fates, asymmetric, but highly aligned structures, or to orchestrate the directional migration of cells during convergent extension during vertebrate gastrulation. In Drosophila, PCP signaling is essential to orient actin wing hairs and to align ommatidia in the eye, in part by coordinating the movement of groups of photoreceptor cells during ommatidial rotation. Importantly, the coordination of PCP signaling with changes in the cytoskeleton is essential for proper epithelial polarity. Formins polymerize linear actin filaments and are key regulators of the actin cytoskeleton. Here, we show that the diaphanous-related formin, Frl, the single fly member of the FMNL (formin related in leukocytes/formin-like) formin subfamily affects ommatidial rotation in the Drosophila eye and is controlled by the Rho family GTPase Cdc42. Interestingly, we also found that frl mutants exhibit an axon growth phenotype in the mushroom body, a center for olfactory learning in the Drosophila brain, which is also affected in a subset of PCP genes. Significantly, Frl cooperates with Cdc42 and another formin, DAAM, during mushroom body formation. This study thus suggests that different formins can cooperate or act independently in distinct tissues, likely integrating various signaling inputs with the regulation of the cytoskeleton. It furthermore highlights the importance and complexity of formin-dependent cytoskeletal regulation in multiple organs and developmental contexts.
机译:非规范的卷曲/平面细胞极性(PCP)通路可调节上皮平面内极性的建立,以产生多种细胞命运,不对称但高度对齐的结构,或在脊椎动物气化过程中的趋同延伸过程中协调细胞的定向迁移。在果蝇中,PCP信号传导对于定向肌动蛋白翼毛和对齐眼中的眼点至关重要,其部分原因是通过协调在光缆旋转过程中感光细胞群的运动。重要的是,PCP信号与细胞骨架变化的协调对于正确的上皮极性至关重要。 Formins聚合线性肌动蛋白丝,是肌动蛋白细胞骨架的关键调节因子。在这里,我们显示了透照相关的小蛋白Frl,即FMNL(与白细胞/小蛋白样样的小蛋白相关的)小蛋白家族的单蝇成员,影响果蝇眼的ommatidial旋转,并受Rho家族GTPase Cdc42的控制。有趣的是,我们还发现frl突变体在蘑菇体内显示出轴突生长表型,这是果蝇大脑嗅觉学习的中心,果蝇大脑中的嗅觉学习也受到PCP基因子集的影响。值得注意的是,Frl在蘑菇体形成过程中与Cdc42和另一种化合物DAAM合作。因此,这项研究表明,不同的formins可以在不同的组织中协作或独立发挥作用,可能将各种信号输入与细胞骨架的调节整合在一起。此外,它突出了在多个器官和发育环境中,依赖形式的细胞骨架调节的重要性和复杂性。

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