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JAK/STAT 信号通路对黄蜂的抑制作用抑制了增殖上皮细胞中中侧肌动蛋白网络的组装和顶端细胞的收缩。

Repression of Wasp by JAK/STAT signalling inhibits medial actomyosin network assembly and apical cell constriction in intercalating epithelial cells.

机构信息

IBDML, UMR6216 CNRS-Université de la Méditerranée, Campus de Luminy, case 907, 13288 Marseille Cedex 09, France.

出版信息

Development. 2009 Dec;136(24):4199-212. doi: 10.1242/dev.040402.

Abstract

Tissue morphogenesis requires stereotyped cell shape changes, such as apical cell constriction in the mesoderm and cell intercalation in the ventrolateral ectoderm of Drosophila. Both processes require force generation by an actomyosin network. The subcellular localization of Myosin-II (Myo-II) dictates these different morphogenetic processes. In the intercalating ectoderm Myo-II is mostly cortical, but in the mesoderm Myo-II is concentrated in a medial meshwork. We report that apical constriction is repressed by JAK/STAT signalling in the lateral ectoderm independently of Twist. Inactivation of the JAK/STAT pathway causes germband extension defects because of apical constriction ventrolaterally. This is associated with ectopic recruitment of Myo-II in a medial web, which causes apical cell constriction as shown by laser nanosurgery. Reducing Myo-II levels rescues the JAK/STAT mutant phenotype, whereas overexpression of the Myo-II heavy chain (also known as Zipper), or constitutive activation of its regulatory light chain, does not cause medial accumulation of Myo-II nor apical constriction. Thus, JAK/STAT controls Myo-II localization by additional mechanisms. We show that regulation of actin polymerization by Wasp, but not by Dia, is important in this process. Constitutive activation of Wasp, a branched actin regulator, causes apical cell constriction and promotes medial 'web' formation. Wasp is inactivated at the cell cortex in the germband by JAK/STAT signalling. Lastly, wasp mutants rescue the normal cortical enrichment of Myo-II and inhibit apical constriction in JAK/STAT mutants, indicating that Wasp is an effector of JAK/STAT signalling in the germband. We discuss possible models for the role of Wasp activity in the regulation of Myo-II distribution.

摘要

组织形态发生需要定型的细胞形状变化,例如中胚层的顶端细胞收缩和果蝇腹侧外胚层的细胞插入。这两个过程都需要肌动球蛋白网络产生力。肌球蛋白-II(Myo-II)的亚细胞定位决定了这些不同的形态发生过程。在插入的外胚层中,Myo-II 主要位于皮质,但在中胚层中,Myo-II 集中在一个内侧网格中。我们报告说,在外侧外胚层中,JAK/STAT 信号独立于 Twist 抑制顶端收缩。JAK/STAT 途径的失活会导致 germband 延伸缺陷,因为顶端在腹侧收缩。这与 Myo-II 在中侧网络中的异位募集有关,激光纳米手术表明这会导致顶端细胞收缩。降低 Myo-II 水平可以挽救 JAK/STAT 突变体的表型,而 Myo-II 重链(也称为 Zipper)的过表达或其调节轻链的组成性激活,不会导致 Myo-II 的中侧积累或顶端收缩。因此,JAK/STAT 通过其他机制控制 Myo-II 的定位。我们表明,Wasp(一种分支肌动蛋白调节剂)对肌动蛋白聚合的调节,而不是 Dia,在这个过程中很重要。Wasp 的组成性激活,一种分支肌动蛋白调节剂,会导致顶端细胞收缩并促进中侧“网络”形成。Wasp 在 germband 通过 JAK/STAT 信号在细胞皮质失活。最后,wasp 突变体挽救了 Myo-II 在正常皮质中的富集,并抑制了 JAK/STAT 突变体中的顶端收缩,表明 Wasp 是 germband 中 JAK/STAT 信号的效应物。我们讨论了 Wasp 活性在调节 Myo-II 分布中的作用的可能模型。

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