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Actomyosin contractility modulates Wnt signaling through adherens junction stability

机译:Actomyosin收缩性通过粘附结稳定性调节WNT信号传导

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摘要

Actomyosin contractility can influence the canonical Wnt signaling pathway in processes like mesoderm differentiation and tissue stiffness during tumorigenesis. We identified that increased nonmuscle myosin II activation and cellular contraction inhibited Wnt target gene transcription in developing Drosophila imaginal disks. Genetic interactions studies were used to show that this effect was due to myosin-induced accumulation of cortical F-actin resulting in clustering and accumulation of E-cadherin to the adherens junctions. This results in E-cadherin titrating any available beta-catenin, the Wnt pathway transcriptional coactivator, to the adherens junctions in order to maintain cell-cell adhesion under contraction. We show that decreased levels of cytoplasmic beta-catenin result in insufficient nuclear translocation for full Wnt target gene transcription. Previous studies have identified some of these interactions, but we present a thorough analysis using the wing disk epithelium to show the consequences of modulating myosin phosphatase. Our work elucidates a mechanism in which the dynamic promotion of actomyosin contractility refines patterning of Wnt transcription during development and maintenance of epithelial tissue in organisms.
机译:Actomyosin收缩性可以影响在肿瘤内酯中的中胚层分化和组织刚度等过程中的规范WNT信号通路。我们鉴定了增加的非霉菌肌蛋白II活化和细胞收缩抑制WNT靶基因转录在发育果蝇发生物盘中。遗传相互作用研究旨在表明这种效果是由于肌蛋白诱导的皮质F-肌动蛋白的积累导致E-Cadherin对粘附结的聚类和积累。这导致E-Cadherin催化任何可用的β-连环蛋白,WNT路径转录共膜剂,以便在收缩下维持细胞 - 细胞粘附。我们表明细胞质β-catenin水平降低导致全Wnt靶基因转录的核易位不足。以前的研究已经确定了一些相互作用,但我们使用翼盘上皮进行彻底的分析,以显示调节肌蛋白磷酸酶的后果。我们的作品阐明了一种机制,其中动态促进侵入性促进在生物体上皮组织的开发和维持期间Wnt转录的图案化。

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  • 来源
    《Molecular biology of the cell》 |2019年第3期|共16页
  • 作者单位

    Simon Fraser Univ Ctr Cell Biol Dev &

    Dis Dept Mol Biol &

    Biochem Burnaby BC V5A 1S6 Canada;

    Simon Fraser Univ Ctr Cell Biol Dev &

    Dis Dept Mol Biol &

    Biochem Burnaby BC V5A 1S6 Canada;

    Simon Fraser Univ Ctr Cell Biol Dev &

    Dis Dept Mol Biol &

    Biochem Burnaby BC V5A 1S6 Canada;

    Simon Fraser Univ Ctr Cell Biol Dev &

    Dis Dept Mol Biol &

    Biochem Burnaby BC V5A 1S6 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
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