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Regulation of planar cell polarity by the dachsous-fat pathway.

机译:脂肪脂肪途径调节平面细胞的极性。

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摘要

Planar cell polarity is the polarization of cells within the plane of a tissue. The Dachsous-Fat pathway plays a key role in the regulation of planar cell polarity and growth during the development of an organism. The transmembrane cadherins Fat and Dachsous from neighboring cells interact heterophilically and regulate the localization of the unconventional myosin Dachs in a cell. Four-jointed, a Golgi-localized kinase modulates the binding between Dachsous and Fat. Dachsous and Four-jointed are expressed in tissue-wide gradients, which influence Fat activity and direct the polarized membrane localization of Dachs.;The Frizzled pathway is another key pathway that regulates planar cell polarity, but its relationship with the Dachsous-Fat pathway was unclear. We demonstrate that Dachs and Dachsous can independently interact with a Frizzled pathway component, Spiny-legs, and direct its localization in vivo. Thus, the Dachsous-Fat pathway provides directional input to the Frizzled pathway by influencing the localization of Spiny-legs. These studies help in understanding how planar cell polarity is regulated in various tissues through coordination between Dachsous-Fat and Frizzled pathways. These studies also reveal that Spiny-legs and its isoform Prickle can respond to distinct planar cell polarity signals and allow the cells to compare and choose between these competing signals to direct polarity robustly in one direction.;Thus, our results identify a mechanism for propagation of planar cell polarity through the tissue, establish the significance of Dachs membrane localization in Dachsous-Fat signaling and identify a molecular mechanism for crosstalk between the two planar cell polarity pathways.;We demonstrate that differential expression of Dachsous or Four-jointed can modulate Dachs polarization at a distance in wing discs. This indicates that Dachsous and Four-jointed gradients can be measured over long range in a tissue through propagation of polarity. We also show that Dachsous and Fat are partially polarized along the endogenous Dachsous and Four-jointed gradients, providing a mechanism for propagation of polarity. Through directed membrane targeting of Dachs, we show that membrane localization of Dachs influences both planar cell polarity and the Hippo signaling pathway. These studies help in understanding the mechanisms involved in establishment and maintenance of planar cell polarity.
机译:平面细胞极性是组织平面内的细胞极化。 Dachsous-Fat途径在生物体发育过程中在调节平面细胞极性和生长中起关键作用。来自相邻细胞的跨膜钙粘着蛋白脂肪和Dachsous发生异源相互作用,并调节非常规肌球蛋白Dachs在细胞中的定位。高尔基体定位的四连接激酶调节Dachsous和Fat之间的结合。 Dachsous和Fourjoined在整个组织的梯度中表达,影响脂肪活动并指导Dachs的极化膜定位。;卷曲的途径是调节平面细胞极性的另一个关键途径,但与Dachsous-Fat途径的关系是不清楚。我们证明Dachs和Dachsous可以独立地与卷曲的路径组件,刺腿,并指导其在体内的定位。因此,Dachsous-Fat途径通过影响多刺小腿的定位向Frizzled途径提供了方向性输入。这些研究有助于了解如何通过Dachsous-Fat和Frizzled途径之间的协调来调节各种组织中的平面细胞极性。这些研究还揭示了刺腿及其同种型Prickle可以对不同的平面细胞极性信号做出反应,并允许细胞在这些竞争信号之间进行比较和选择,以在一个方向上稳固地引导极性。因此,我们的结果确定了一种传播机制组织中平面细胞极性的变化,建立Dachs-Fat信号传导中Dachs膜定位的意义,并确定两条平面细胞极性途径之间的串扰的分子机制。我们证明Dachsous或四接头的差异表达可以调节Dachs机翼盘一定距离处的极化。这表明可以通过极性的传播在组织中的长距离范围内测量Dachsous梯度和四点梯度。我们还显示,Dachsous和Fat沿着内源性Dachsous和四接头梯度部分极化,从而提供了极性传播的机制。通过针对Dachs的定向膜靶向,我们显示Dachs的膜定位影响平面细胞极性和Hippo信号通路。这些研究有助于理解涉及建立和维持平面细胞极性的机制。

著录项

  • 作者

    Ambegaonkar, Abhijit Ashok.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Cellular biology.;Developmental biology.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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