Literature DB >> 29471585

Ripply3 is required for the maintenance of epithelial sheets in the morphogenesis of pharyngeal pouches.

Yoshihiro Tsuchiya1,2,3, Yusuke Mii1,2,3, Kazunori Okada1,3, Mikio Furuse4, Tadashi Okubo5, Shinji Takada1,2,3.   

Abstract

During tissue development, the morphogenesis of epithelial sheets is regulated by many factors, including mechanical force, although the underlying mechanisms remain largely unknown. In the pharyngeal region of the vertebrate embryo, endodermal epithelium is reiteratively folded outward to form pharyngeal pouches, making partitions between the pharyngeal arches. Ripply3, encoding a member of the Ripply family of adaptor proteins, is required for the pouch formation posterior to the 2nd pharyngeal pouch. In this study, we found that the expression of mouse Ripply3 was specifically activated in accordance with the bending of the endodermal epithelium during the pouch formation. In Ripply3-deficient embryos, a continuous monolayer of the endodermal epithelium was not maintained posterior to the 2nd pharyngeal pouch. Corresponding to the endodermal region of the deformed epithelium, the activated form of Integrin β1, which was localized at the basal side of the epithelial cells in the wild-type embryos, was not persistently observed in the mutants. On the other hand, cell proliferation and apoptotic cell death in the endoderm were not obviously affected by the Ripply3 deficiency. Significantly, Ripply3 expressed in cultured cells was found to be preferentially accumulated in the focal adhesions, which are Integrin-mediated adhesive contact sites transmitting mechanical force between the extracellular matrix and attached cells. Furthermore, Ripply3 promoted the maturation of focal adhesions in these cells. Thus, Ripply3 appears to have been activated to enhance the connection between the extracellular matrix and endodermal epithelial cells, as a mechanism to resist the mechanical stress generated during the bending of the epithelial sheets.
© 2018 Japanese Society of Developmental Biologists.

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Keywords:  branchial region; epithelial cells; focal adhesions; mechanical force; morphogenesis

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Year:  2018        PMID: 29471585     DOI: 10.1111/dgd.12425

Source DB:  PubMed          Journal:  Dev Growth Differ        ISSN: 0012-1592            Impact factor:   2.053


  1 in total

1.  Identification of a 3-Gene Prognostic Index for Papillary Thyroid Carcinoma.

Authors:  Lin-Kun Zhong; Xing-Yan Deng; Fei Shen; Wen-Song Cai; Jian-Hua Feng; Xiao-Xiong Gan; Shan Jiang; Chi-Zhuai Liu; Ming-Guang Zhang; Jiang-Wei Deng; Bing-Xing Zheng; Xiao-Zhang Xie; Li-Qing Ning; Hui Huang; Shan-Shan Chen; Jian-Hang Miao; Bo Xu
Journal:  Front Mol Biosci       Date:  2022-03-16
  1 in total

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