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首页> 外文期刊>Mechanisms of Development >Systematic expression and loss-of-function analysis defines spatially restricted requirements for Drosophila RhoGEFs and RhoGAPs in leg morphogenesis
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Systematic expression and loss-of-function analysis defines spatially restricted requirements for Drosophila RhoGEFs and RhoGAPs in leg morphogenesis

机译:系统表达和功能丧失分析定义了果蝇RhoGEF和RhoGAP在腿部形态发生中的空间受限要求

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The Drosophila leg imaginal disc consists of a peripheral region that contributes to adult body wall, and a central region that forms the leg proper. While the patterning signals and transcription factors that determine the identity of adult structures have been identified, the mechanisms that determine the shape of these structures remain largely unknown. The family of Rho GTPases, which consists of seven members in flies, modulates cell adhesion, actomyosin contractility, protrusive membrane activity, and cell-matrix adhesion to generate mechanical forces that shape adult structures. The Rho GTPases are ubiquitously expressed and it remains unclear how they orchestrate morphogenetic events. The Rho guanine nucleotide exchange factors (RhoGEFs) and Rho GTPase activating proteins (RhoGAPs), which respectively activate and deactivate corresponding Rho GTPases, have been proposed to regulate the activity of Rho signaling cascades in specific spatio-temporal patterns to orchestrate morphogenetic events. Here we identify restricted expression of 12 of the 20 RhoGEFs and 10 of the 22 Rho RhoGAPs encoded in Drosophila during metamorphosis. Expression of a subset of each family of RhoGTPase regulators was restricted to motile cell populations including tendon, muscle, trachea, and peripodial stalk cells. A second subset was restricted either to all presumptive joints or only to presumptive tarsal joints. Depletion of individual RhoGEFs and RhoGAPs in the epithelium of the disc proper identified several joint-specific genes, which act downstream of segmental patterning signals to control epithelial morphogenesis. Our studies provide a framework with which to understand how Rho signaling cascades orchestrate complex morphogenetic events in multi-cellular organisms, and evidence that patterning signals regulate these cascades to control apical constriction and epithelial invagination at presumptive joints
机译:果蝇腿假想盘由有助于成年人体壁的外围区域和形成腿部的中央区域组成。虽然已经确定了确定成人结构身份的模式信号和转录因子,但确定这些结构形状的机制仍然未知。 Rho GTPases家族由果蝇​​中的七个成员组成,调节细胞粘附力,放线菌素的收缩性,突出的膜活性和细胞基质粘附力,从而产生可塑造成年结构的机械力。 Rho GTPases被普遍表达,目前尚不清楚它们如何组织形态发生事件。已提出分别激活和失活相应的Rho GTPases的Rho鸟嘌呤核苷酸交换因子(RhoGEFs)和Rho GTPase活化蛋白(RhoGAPs),以特定的时空模式调节Rho信号级联反应的活性,以协调形态发生事件。在这里,我们确定果蝇在变态过程中编码的20个RhoGEF中的12个和22个Rho RhoGAP中的10个的限制性表达。 RhoGTPase调节剂的每个家族的子集的表达仅限于运动细胞群体,包括肌腱,肌肉,气管和围足茎细胞。第二个子集仅限于所有假定关节或仅限于to关节。椎间盘上皮中单个RhoGEF和RhoGAP的耗竭正确地识别了几个关节特异性基因,这些基因在节段模式信号的下游起作用以控制上皮形态发生。我们的研究提供了一个框架,以了解Rho信号级联如何在多细胞生物中协调复杂的形态发生事件,并证明模式信号调节这些级联以控制推测性关节的根尖收缩和上皮内陷

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