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Cytoskeletal Tension Inhibits Hippo Signaling through an Ajuba-Warts Complex

机译:细胞骨架张力通过Ajuba-Warts复合体抑制河马信号

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Mechanical forces have been proposed to modulate organ growth, but a molecular mechanism that links them to growth regulation in vivo has been lacking. We report that increasing tension within the cytoskeleton increases Drosophila wing growth, whereas decreasing cytoskeletal tension decreases wing growth. These changes in growth can be accounted for by changes in the activity of Yorkie, a transcription factor regulated by the Hippo pathway. The influence of myosin activity on Yorkie depends genetically on the Ajuba LIM protein Jub, a negative regulator of Warts within the Hippo pathway. We further show that Jub associates with a-catenin and that its localization to adherens junctions and association with a-catenin are promoted by cytoskeletal tension. Jub recruits Warts to junctions in a tension-dependent manner. Our observations delineate a mechanism that links cytoskeletal tension to regulation of Hippo pathway activity, providing a molecular understanding of how mechanical forces can modulate organ growth.
机译:已经提出了机械力来调节器官生长,但是缺乏将它们与体内生长调节联系起来的分子机制。我们报告说,增加细胞骨架内的张力会增加果蝇的机翼生长,而降低细胞骨架张力会降低机翼的生长。这些生长的变化可以通过约克活性的改变来解释,约克活性是由河马途径调节的转录因子。肌球蛋白活性对Yorkie的影响在遗传上取决于Ajuba LIM蛋白Jub,它是Hippo途径中疣的负调节剂。我们进一步表明,Jub与a-catenin缔合,其定位于粘附连接和与a-catenin的缔合通过细胞骨架张力得以促进。 Jub以依赖于张力的方式招募疣到交界处。我们的观察结果描述了一种将细胞骨架张力与河马途径活性调节联系起来的机制,从而提供了有关机械力如何调节器官生长的分子理解。

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