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刺猬信号转导中的局部差异增加了细胞间的机械连接张力,并使果蝇前后体节边界处的细胞插入产生偏向性。

A local difference in Hedgehog signal transduction increases mechanical cell bond tension and biases cell intercalations along the Drosophila anteroposterior compartment boundary.

作者信息

Rudolf Katrin, Umetsu Daiki, Aliee Maryam, Sui Liyuan, Jülicher Frank, Dahmann Christian

机构信息

Institute of Genetics, Technische Universität Dresden, Dresden 01062, Germany.

RIKEN Center for Developmental Biology, Kobe 650-0047, Japan.

出版信息

Development. 2015 Nov 15;142(22):3845-58. doi: 10.1242/dev.125542.

Abstract

Tissue organization requires the interplay between biochemical signaling and cellular force generation. The formation of straight boundaries separating cells with different fates into compartments is important for growth and patterning during tissue development. In the developing Drosophila wing disc, maintenance of the straight anteroposterior (AP) compartment boundary involves a local increase in mechanical tension at cell bonds along the boundary. The biochemical signals that regulate mechanical tension along the AP boundary, however, remain unknown. Here, we show that a local difference in Hedgehog signal transduction activity between anterior and posterior cells is necessary and sufficient to increase mechanical tension along the AP boundary. This difference in Hedgehog signal transduction is also required to bias cell rearrangements during cell intercalations to keep the characteristic straight shape of the AP boundary. Moreover, severing cell bonds along the AP boundary does not reduce tension at neighboring bonds, implying that active mechanical tension is upregulated, cell bond by cell bond. Finally, differences in the expression of the homeodomain-containing protein Engrailed also contribute to the straight shape of the AP boundary, independently of Hedgehog signal transduction and without modulating cell bond tension. Our data reveal a novel link between local differences in Hedgehog signal transduction and a local increase in active mechanical tension of cell bonds that biases junctional rearrangements. The large-scale shape of the AP boundary thus emerges from biochemical signals inducing patterns of active tension on cell bonds.

摘要

组织的形成需要生化信号传导与细胞力产生之间的相互作用。在组织发育过程中,将具有不同命运的细胞分隔到不同区域的直边界的形成对于生长和模式形成很重要。在发育中的果蝇翅盘中,维持前后(AP)隔室的直边界涉及沿边界的细胞连接处机械张力的局部增加。然而,调节AP边界处机械张力的生化信号仍然未知。在这里,我们表明前后细胞之间Hedgehog信号转导活性的局部差异对于增加AP边界处的机械张力是必要且充分的。这种Hedgehog信号转导的差异在细胞插入过程中也需要偏向细胞重排,以保持AP边界的特征性直线形状。此外,切断沿AP边界的细胞连接不会降低相邻连接处的张力,这意味着活性机械张力是逐个细胞连接上调的。最后,含同源结构域的蛋白Engrailed表达的差异也有助于AP边界的直线形状,独立于Hedgehog信号转导且不调节细胞连接张力。我们的数据揭示了Hedgehog信号转导的局部差异与细胞连接活性机械张力的局部增加之间的新联系,这种增加使连接重排产生偏向。因此AP边界的大规模形状源于生化信号诱导细胞连接上的活性张力模式。

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