Literature DB >> 34461105

Pinching and pushing: fold formation in the Drosophila dorsal epidermis.

Vijay Velagala1, Jeremiah J Zartman2.   

Abstract

Epithelial folding is a fundamental morphogenetic process that shapes planar epithelial sheets into complex three-dimensional structures. Multiple mechanisms can generate epithelial folds, including apical constriction, which acts locally at the cellular level, differential growth on the tissue scale, or buckling because of compression from neighboring tissues. Here, we investigate the formation of dorsally located epithelial folds at segment boundaries during the late stages of Drosophila embryogenesis. We found that the fold formation at the segment boundaries occurs through the juxtaposition of two key morphogenetic processes: local apical constriction and tissue-level compressive forces from posterior segments. Further, we found that epidermal spreading and fold formation are accompanied by spatiotemporal pulses of Hedgehog (Hh) signaling. A computational model that incorporates the local forces generated from the differential tensions of the apical, basal, and lateral sides of the cell and active forces generated within the whole tissue recapitulates the overall fold formation process in wild-type and Hh overexpression conditions. In sum, this work demonstrates how epithelial folding depends on multiple, separable physical mechanisms to generate the final morphology of the dorsal epidermis. This work illustrates the modularity of morphogenetic unit operations that occur during epithelial morphogenesis.
Copyright © 2021 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2021        PMID: 34461105      PMCID: PMC8516683          DOI: 10.1016/j.bpj.2021.08.028

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   3.699


  61 in total

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Review 8.  The origin and the mechanism of mechanical polarity during epithelial folding.

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Journal:  Semin Cell Dev Biol       Date:  2021-05-29       Impact factor: 7.727

Review 9.  Cellular systems for epithelial invagination.

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10.  EPySeg: a coding-free solution for automated segmentation of epithelia using deep learning.

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