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首页> 外文期刊>Current Biology: CB >The Balance of Prickle/Spiny-Legs Isoforms Controls the Amount of Coupling between Core and Fat PCP Systems
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The Balance of Prickle/Spiny-Legs Isoforms Controls the Amount of Coupling between Core and Fat PCP Systems

机译:刺痒/刺腿同工型的平衡控制核心和胖子PCP系统之间的耦合量

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Background: The conserved Fat and Core planar cell polarity (PCP) pathways work together to specify tissue-wide orientation of hairs and ridges in the Drosophila wing. Their components form intracellularly polarized complexes at adherens junctions that couple the polarity of adjacent cells and form global patterns. How Fat and Core PCP systems interact is not understood. Some studies suggest that Fat PCP directly orients patterns formed by Core PCP components. Others implicate oriented tissue remodeling in specifying Core PCP patterns. Results: We use genetics, quantitative image analysis, and physical modeling to study Fat and Core PCP interactions during wing development. We show their patterns change during morphogenesis, undergoing phases of coupling and uncoupling that are regulated by antagonistic Core PCP protein isoforms Prickle and Spiny-legs. Evolving patterns of Core PCP are hysteretic: the early Core PCP pattern is modified by tissue flows and then by coupling to Fat PCP, producing sequential patterns that guide hairs and then ridges. Our data quantitatively account for altered hair and ridge polarity patterns in PCP mutants. Premature coupling between Fat and Core PCP explains altered polarity patterns in pk mutants. In other Core PCP mutants; hair polarity patterns are guided directly by Fat PCP. When both systems fail, hairs still align locally and obey signals associated with veins. Conclusions: Temporally regulated coupling between the Fat and Core PCP systems enables a single tissue to develop sequential polarity patterns that orient distinct morphological structures
机译:背景:保守的脂肪和核心平面细胞极性(PCP)途径共同作用,以规定果蝇翼中毛发和脊的全组织方向。它们的成分在粘附连接处形成细胞内极化复合物,该连接处偶联相邻细胞的极性并形成整体模式。 Fat和Core PCP系统如何相互作用尚不清楚。一些研究表明,Fat PCP直接定向由核心PCP组件形成的图案。其他人则在指定核心PCP模式时暗示了定向的组织重塑。结果:我们使用遗传学,定量图像分析和物理模型研究机翼发育过程中脂肪和核心PCP的相互作用。我们显示出它们的形态发生在形态发生过程中的变化,经历了由拮抗性核心PCP蛋白同工型Prickle和Spiny-legs调控的偶联和解偶联阶段。核心PCP的进化模式具有滞后性:早期的核心PCP模式通过组织流动,然后通过与脂肪PCP耦合来进行修饰,从而产生依次引导毛发和脊的连续模式。我们的数据定量说明了PCP突变体中改变的头发和脊的极性模式。脂肪和核心PCP之间的过早偶联解释了pk突变体中极性模式的改变。在其他Core PCP突变体中;头发极性模式直接由Fat PCP指导。当两个系统都出现故障时,头发仍会局部排列并服从与静脉相关的信号。结论:脂肪和核心PCP系统之间的暂时调节耦合使单个组织能够形成顺序的极性模式,从而定向不同的形态结构

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