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Inhibition of negative feedback for persistent epithelial cell–cell junction contraction by p21-activated kinase 3

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  • Hiroyuki Uechi

    (Tohoku University
    Max Planck Institute of Molecular Cell Biology and Genetics)

  • Kazuki Fukushima

    (Tohoku University)

  • Ryota Shirasawa

    (Tohoku University)

  • Sayaka Sekine

    (Tohoku University)

  • Erina Kuranaga

    (Tohoku University)

Abstract

Actin-mediated mechanical forces are central drivers of cellular dynamics. They generate protrusive and contractile dynamics, the latter of which are induced in concert with myosin II bundled at the site of contraction. These dynamics emerge concomitantly in tissues and even each cell; thus, the tight regulation of such bidirectional forces is important for proper cellular deformation. Here, we show that contractile dynamics can eventually disturb cell–cell junction contraction in the absence of p21-activated kinase 3 (Pak3). Upon Pak3 depletion, contractility induces the formation of abnormal actin protrusions at the shortening junctions, which causes decrease in E-cadherin levels at the adherens junctions and mislocalization of myosin II at the junctions before they enough shorten, compromising completion of junction shortening. Overexpressing E-cadherin restores myosin II distribution closely placed at the junctions and junction contraction. Our results suggest that contractility both induces and perturbs junction contraction and that the attenuation of such perturbations by Pak3 facilitates persistent junction shortening.

Suggested Citation

  • Hiroyuki Uechi & Kazuki Fukushima & Ryota Shirasawa & Sayaka Sekine & Erina Kuranaga, 2022. "Inhibition of negative feedback for persistent epithelial cell–cell junction contraction by p21-activated kinase 3," Nature Communications, Nature, vol. 13(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-31252-0
    DOI: 10.1038/s41467-022-31252-0
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    References listed on IDEAS

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    1. Claire Bertet & Lawrence Sulak & Thomas Lecuit, 2004. "Myosin-dependent junction remodelling controls planar cell intercalation and axis elongation," Nature, Nature, vol. 429(6992), pages 667-671, June.
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    3. Matteo Rauzi & Pierre-François Lenne & Thomas Lecuit, 2010. "Planar polarized actomyosin contractile flows control epithelial junction remodelling," Nature, Nature, vol. 468(7327), pages 1110-1114, December.
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