FB2026_01 , released March 12, 2026
FB2026_01 , released March 12, 2026
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Citation
Paré, A.C., Zallen, J.A. (2020). Cellular, molecular, and biophysical control of epithelial cell intercalation.  Curr. Topics Dev. Biol. 136(): 167--193.
FlyBase ID
FBrf0244631
Publication Type
Review
Abstract
Convergent extension is a conserved mechanism for elongating tissues. In the Drosophila embryo, convergent extension is driven by planar polarized cell intercalation and is a paradigm for understanding the cellular, molecular, and biophysical mechanisms that establish tissue structure. Studies of convergent extension in Drosophila have provided key insights into the force-generating molecules that promote convergent extension in epithelial tissues, as well as the global systems of spatial information that systematically organize these cell behaviors. A general framework has emerged in which asymmetrically localized proteins involved in cytoskeletal tension and cell adhesion direct oriented cell movements, and spatial signals provided by the Toll, Tartan, and Teneurin receptor families break planar symmetry to establish and coordinate planar cell polarity throughout the tissue. In this chapter, we describe the cellular, molecular, and biophysical mechanisms that regulate cell intercalation in the Drosophila embryo, and discuss how research in this system has revealed conserved biological principles that control the organization of multicellular tissues and animal body plans.
PubMed ID
PubMed Central ID
PMC8559432 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Curr. Topics Dev. Biol.
    Title
    Current Topics in Developmental Biology
    Publication Year
    1966-
    ISBN/ISSN
    0070-2153
    Data From Reference