首页> 外文期刊>Journal of cell biology >An in vivo structure-function study of armadillo, the beta-catenin homologue, reveals both separate and overlapping regions of the protein required for cell adhesion and for wingless signaling.
【24h】

An in vivo structure-function study of armadillo, the beta-catenin homologue, reveals both separate and overlapping regions of the protein required for cell adhesion and for wingless signaling.

机译:犰狳的体内结构功能研究(β-catenin同源物)揭示了细胞粘附和无翼信号传导所需的蛋白质的分离和重叠区域。

获取原文
           

摘要

Armadillo, the Drosophila homologue of vertebrate beta-catenin, plays a pivotal role both in Wingless signaling and in assembly of adherens junctions. We performed the first in vivo structure-function study of an adherens junction protein, by generating and examining a series of Armadillo mutants in the context of the entire animal. We tested each mutant by assaying its biological function, its ability to bind proteins that normally associate with Armadillo in adherens junctions, its cellular localization, and its pattern of phosphorylation. We mapped the binding sites for DE-cadherin and alpha-catenin. Although these bind to Armadillo independently of each other, binding of each is required for the function of adherens junctions. We identified two separate regions of Armadillo critical for Wingless signaling. We demonstrated that endogenous Armadillo accumulates in the nucleus and provide evidence that it may act there in transducing Wingless signal. We found that the Arm repeats, which make up the central two-thirds of Armadillo, differ among themselves in their functional importance in different processes. Finally, we demonstrated that Armadillo's roles in adherens junctions and Wingless signaling are independent. We discuss the potential biochemical role of Armadillo in each process.
机译:犰狳,脊椎动物β-catenin的果蝇同源物,在无翅信号传导和粘附连接的组装中均起着关键作用。我们通过在整个动物的背景下生成和检查一系列犰狳突变体,进行了粘附连接蛋白的首次体内结构功能研究。我们通过测定其突变体的生物学功能,结合蛋白的能力(通常与犰狳在黏附连接点中结合),其细胞定位及其磷酸化模式来测试每个突变体。我们绘制了DE-钙粘蛋白和α-连环蛋白的结合位点。尽管它们彼此独立地结合在犰狳上,但是对于粘附连接的功能,它们之间的结合是必需的。我们确定了犰狳对无翼信号至关重要的两个独立区域。我们证明了内源犰狳在细胞核中积累,并提供证据表明它可能在转导无翼信号中起作用。我们发现,组成Armadillo中央三分之二的Arm重复序列在不同过程中的功能重要性之间存在差异。最后,我们证明了犰狳在粘附连接和无翼信号传导中的作用是独立的。我们讨论了犰狳在每个过程中的潜在生化作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号