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Two Frizzled Planar Cell Polarity Signals in the Drosophila Wing Are Differentially Organized by the Fat/Dachsous Pathway

机译:果蝇翼中的两个毛躁的平面细胞极性信号是由脂肪/迟熟途径差异组织的

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摘要

The regular array of distally pointing hairs on the mature Drosophila wing is evidence for the fine control of Planar Cell Polarity (PCP) during wing development. Normal wing PCP requires both the Frizzled (Fz) PCP pathway and the Fat/Dachsous (Ft/Ds) pathway, although the functional relationship between these pathways remains under debate. There is strong evidence that the Fz PCP pathway signals twice during wing development, and we have previously presented a Bidirectional-Biphasic Fz PCP signaling model which proposes that the Early and Late Fz PCP signals are in different directions and employ different isoforms of the Prickle protein. The goal of this study was to investigate the role of the Ft/Ds pathway in the context of our Fz PCP signaling model. Our results allow us to draw the following conclusions: (1) The Early Fz PCP signals are in opposing directions in the anterior and posterior wing and converge precisely at the site of the L3 wing vein. (2) Increased or decreased expression of Ft/Ds pathway genes can alter the direction of the Early Fz PCP signal without affecting the Late Fz PCP signal. (3) Lowfat, a Ft/Ds pathway regulator, is required for the normal orientation of the Early Fz PCP signal but not the Late Fz PCP signal. (4) At the time of the Early Fz PCP signal there are symmetric gradients of dachsous (ds) expression centered on the L3 wing vein, suggesting Ds activity gradients may orient the Fz signal. (5) Localized knockdown or over-expression of Ft/Ds pathway genes shows that boundaries/gradients of Ft/Ds pathway gene expression can redirect the Early Fz PCP signal specifically. (6) Altering the timing of ds knockdown during wing development can separate the role of the Ft/Ds pathway in wing morphogenesis from its role in Early Fz PCP signaling.
机译:成熟的果蝇机翼上有规律地排列着指向远端的毛,这表明机翼发育过程中可以很好地控制平面细胞极性(PCP)。正常的机翼PCP既需要卷曲(Fz)PCP途径,又需要脂肪/ Dachsous(Ft / Ds)途径,尽管这些途径之间的功能关系尚有争议。有充分的证据表明Fz PCP途径在机翼发育过程中发出了两次信号,并且我们之前已经提出了双向双向Fz PCP信号模型,该模型建议早期和晚期Fz PCP信号方向不同,并使用不同的Prickle蛋白亚型。 。这项研究的目的是在我们的Fz PCP信号模型的背景下研究Ft / Ds途径的作用。我们的结果使我们得出以下结论:(1)早期Fz PCP信号在前翼和后翼的方向相反,并且精确地会聚在L3翼静脉的位置。 (2)Ft / Ds途径基因表达的增加或减少可以改变早期Fz PCP信号的方向,而不会影响后期Fz PCP信号。 (3)早期Fz PCP信号的正常方向需要Lowfat,Ft / Ds通路调节器,而后期Fz PCP信号则不需要。 (4)在早期Fz PCP信号时,以L3机翼静脉为中心的dachs(ds)表达出现对称梯度,这表明Ds活性梯度可能会定向Fz信号。 (5)Ft / Ds途径基因的局部敲低或过表达表明Ft / Ds途径基因表达的边界/梯度可以特异性地重定向早期Fz PCP信号。 (6)在机翼发育过程中改变ds基因敲除的时间可以将Ft / Ds途径在机翼形态发生中的作用与其在Fz PCP早期信号传导中的作用分开。

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