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Heterotrimeric G protein signaling governs the cortical stability during apical constriction in Drosophila gastrulation.

机译:三聚体G蛋白信号传导控制果蝇胃顶收缩过程中的皮质稳定性。

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摘要

During gastrulation in Drosophila melanogaster, coordinated apical constriction of the cellular surface drives invagination of the mesoderm anlage. Forces generated by the cortical cytoskeletal network have a pivotal role in this cellular shape change. Here, we show that the organisation of cortical actin is essential for stabilisation of the cellular surface against contraction. We found that mutation of genes related to heterotrimeric G protein (HGP) signaling, such as Gβ13F, Gγ1, and ric-8, results in formation of blebs on the ventral cellular surface. The formation of blebs is caused by perturbation of cortical actin and induced by local surface contraction. HGP signaling mediated by two Gα subunits, Concertina and G-iα65A, constitutively regulates actin organisation. We propose that the organisation of cortical actin by HGP is required to reinforce the cortex so that the cells can endure hydrostatic stress during tissue folding.
机译:在果蝇胃中的胃形成过程中,细胞表面协调的根尖收缩驱动中胚层的内陷。皮质细胞骨架网络产生的力在这种细胞形状变化中起关键作用。在这里,我们表明皮质肌动蛋白的组织对于稳定细胞表面抵抗收缩至关重要。我们发现与异源三聚体G蛋白(HGP)信号相关的基因突变,例如Gβ13F,Gγ1和ric-8,导致在腹侧细胞表面形成气泡。气泡的形成是由皮质肌动蛋白的扰动引起的,并且是由局部表面收缩引起的。由两个Gα亚基,Concertina和G-iα65A介导的HGP信号组成性地调节肌动蛋白的组织。我们建议需要HGP皮质肌动蛋白的组织来增强皮质,以便细胞可以在组织折叠过程中承受静水压力。

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