A TRIO-RhoA-Shroom3 pathway is required for apical constriction during lens pit invagination

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A Trio-RhoA-Shroom3 pathway is required for apical constriction and epithelial invagination.

Epithelial invagination is a common feature of embryogenesis. An example of invagination morphogenesis occurs during development of the early eye when the lens placode forms the lens pit. This morphogenesis is accompanied by a columnar-to-conical cell shape change (apical constriction or AC) and is known to be dependent on the cytoskeletal protein Shroom3. Because Shroom3-induced AC can be Rock...

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Pax6-dependent Shroom3 expression regulates apical constriction during lens placode invagination.

Embryonic development requires a complex series of relative cellular movements and shape changes that are generally referred to as morphogenesis. Although some of the mechanisms underlying morphogenesis have been identified, the process is still poorly understood. Here, we address mechanisms of epithelial morphogenesis using the vertebrate lens as a model system. We show that the apical constri...

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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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Uncoupling apical constriction from tissue invagination

Apical constriction is a widely utilized cell shape change linked to folding, bending and invagination of polarized epithelia. It remains unclear how apical constriction is regulated spatiotemporally during tissue invagination and how this cellular process contributes to tube formation in different developmental contexts. Using Drosophila salivary gland (SG) invagination as a model, we show tha...

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Thyroid bud morphogenesis requires CDC42- and SHROOM3-dependent apical constriction

Early development of the gut endoderm and its subsequent remodeling for the formation of organ buds are accompanied by changes to epithelial cell shape and polarity. Members of the Rho-related family of small GTPases and their interacting proteins play multiple roles in regulating epithelial morphogenesis. In this study we examined the role of Cdc42 in foregut development and organ bud formatio...

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ژورنال

عنوان ژورنال: Developmental Biology

سال: 2011

ISSN: 0012-1606

DOI: 10.1016/j.ydbio.2011.05.170