The mechanosensitive protein Zyxin influences Hippo signaling and tissue growth via adherens junctions and basal spot junctions in Drosophila
Details
Publication Year 2026-08-17,Volume 36,Issue #16,Page 4100-4112.e4
Journal Title
Current Biology
Publication Type
Research article
Abstract
Mechanical forces such as tension and compression play a central role in the growth and morphogenesis of tissues. Cell-cell junctions and the actin cytoskeleton are key mediators of mechanical forces and influence the activity of signaling networks, including the Hippo pathway. Here, we show that the mechanosensitive protein Zyxin (Zyx) localizes predominantly to adherens junctions (AJs) and basal spot junctions (BSJs) of Drosophila epithelial tissues. At these subcellular locations, Zyx works in concert with Ajuba to limit Hpo signaling and promote Drosophila epithelial tissue growth. Zyx recruits both Ajuba and the central Hpo pathway kinase Warts (Wts) to AJs and BSJs, which likely limits Wts activity by segregating it from Hpo pathway activator proteins. We further show that Zyx's association with cell-cell junctions is promoted by cytoskeletal tension and that Zyx supports the transmission of actomyosin tension to AJs in growing epithelial tissues. These findings indicate the conservation of this function. Thus, we provide new insights into how Zyx couples mechanical cues to Hpo pathway-dependent tissue growth and highlight the importance of BSJs and their associated actomyosin network in epithelial tissue development.
Keywords
Animals; *Adherens Junctions/metabolism; *Drosophila Proteins/metabolism/genetics; *Signal Transduction; *Zyxin/metabolism/genetics; *Intracellular Signaling Peptides and Proteins/metabolism/genetics; *Protein Serine-Threonine Kinases/metabolism/genetics; Hippo Kinases; *Drosophila melanogaster/growth & development/genetics/physiology; Protein Kinases; Hippo signaling; LIM domain protein; Warts kinase; Zyxin; actomyosin; adherens junctions; basal spot junctions; cell adhesion; cytoskeletal tension; growth control
Department(s)
Laboratory Research
Open Access at Publisher's Site
https://doi.org/10.1016/j.cub.2026.07.016
Terms of Use/Rights Notice
Refer to copyright notice on published article.


Creation Date: 2026-09-14 05:56:13
Last Modified: 2026-09-14 05:56:18
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