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Regulating mechanical tension at compartment boundaries in Drosophila

机译:调节果蝇隔室边界的机械张力

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During animal development, cells with similar function and fate often stay together and sort out from cells with different fates. In Drosophila wing imaginal discs, cells of anterior and posterior fates are separated by a straight compartment boundary. Separation of anterior and posterior cells requires the homeodomain-containing protein Engrailed, which is expressed in posterior cells. Engrailed induces the expression of the short-range signaling molecule Hedgehog in posterior cells and confines Hedgehog signal transduction to anterior cells. Transduction of the Hedgehog signal in anterior cells is required for the separation of anterior and posterior cells. Previous work showed that this separation of cells involves a local increase in mechanical tension at cell junctions along the compartment boundary. However, how mechanical tension was locally increased along the compartment boundary remained unknown. A recent paper now shows that the difference in Hedgehog signal transduction between anterior and posterior cells is necessary and sufficient to increase mechanical tension. The local increase in mechanical tension biases junctional rearrangements during cell intercalations to maintain the straight shape of the compartment boundary. These data highlight how developmental signals can generate patterns of mechanical tension important for tissue organization.
机译:在动物发育过程中,具有相似功能和命运的细胞经常呆在一起,并从命运不同的细胞中分选出来。在果蝇的翼假想盘中,前缘和后缘的细胞被笔直的隔室边界分隔开。前后细胞的分离需要含有同源结构域的蛋白Engrailed,该蛋白在后细胞中表达。 Engrailed诱导后壁细胞中短程信号分子Hedgehog的表达并将Hedgehog信号转导限制在前细胞中。分离前壁细胞和后壁细胞需要刺猬信号的转导。先前的工作表明,这种细胞分离涉及沿隔室边界的细胞连接处机械张力的局部增加。然而,如何沿着隔室边界局部增加机械张力仍然未知。现在,最近的一篇论文表明,前后细胞之间刺猬信号转导的差异是必要的,并且足以增加机械张力。机械张力的局部增加会在细胞插入过程中使连接重排产生偏差,以保持隔室边界的直线形状。这些数据突出了发育信号如何产生对组织重要的机械张力模式。

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