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

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

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 ...

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Endocytosis Is Required for Efficient Apical Constriction during Xenopus Gastrulation

Coordinated apical constriction (AC) in epithelial sheets drives tissue invagination [1, 2] and is required for diverse morphogenetic movements such as gastrulation [3], neurulation [4, 5], and organogenesis [6]. We showed previously that actomyosin contractility drives AC in Xenopus laevis bottle cells [7]; however, it remained unclear whether it does so in concert with other processes. Here w...

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ژورنال

عنوان ژورنال: Mechanisms of Development

سال: 2013

ISSN: 0925-4773

DOI: 10.1016/j.mod.2012.10.001