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Cellular mechanisms for the regulation of VE-cadherin endocytosis.

机译:调节VE-钙粘着蛋白内吞作用的细胞机制。

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摘要

Cadherins maintain adult tissue architecture and direct morphogenic events through homotypic cellular interactions and via signaling pathways that direct cell growth and migration. In the vascular endothelium, the dynamic regulation of cadherin-based cell adhesion is crucial for vascular development. Vascular endothelial (VE)-cadherin is the central adhesion molecule in endothelial adherens junctions and its regulation is crucial for vascular function. p120-catenin (p120) binds to cadherins and regulates cadherin levels by preventing cadherin endocytosis and degradation. In vivo studies have demonstrated that p120 is required for vascular development, and mice lacking p120 in endothelial cells exhibit severe defects in vascular patterning, barrier function, and proliferation. These phenotypes are at least partially dependent on the loss of VE-cadherin observed in vessels lacking p120.;The primary goal of the research described in this dissertation is to understand the mechanism by which p120 regulates VE-cadherin endocytosis. Studies shown here have demonstrated that p120 prevents VE-cadherin from entering a clathrin-mediated endocytic pathway through a mechanism that requires binding of p120 to the cadherin cytoplasmic tail. We demonstrate that p120 prevents VE-cadherin internalization independently of its role in regulating RhoGTPase activity. Rather, we present evidence that p120 stabilizes VE-cadherin at the plasma membrane by competing with the clathrin adaptor AP-2 for interactions with the VE-cadherin juxtamembrane domain.;We have identified a key role for the clathrin adaptor complex AP-2 in regulating VE-cadherin endocytosis. AP-2 interacts with the VE-cadherin cytoplasmic tail, and is required for VE-cadherin endocytosis. Mutation of a tyrosine motif in the VE-cadherin juxtamembrane domain compromises VE-cadherin endocytosis and reduces the efficiency of AP-2 binding to the VE-cadherin tail. These findings support a model in which p120 binding to the VE-cadherin tail inhibits the entry of VE-cadherin into a clathrin-mediated endocytic pathway by preventing interactions with the clathrin adaptor AP-2.;These studies further elucidate the mechanism by which p120 functions as a setpoint for VE-cadherin expression and establish a line of inquiry to investigate the role of VE-cadherin membrane trafficking during vascular development, when it is likely to play an important role in regulating the blood vessel growth and reorganization that occurs during angiogenesis.
机译:钙黏着蛋白通过同型细胞相互作用以及通过指导细胞生长和迁移的信号通路来维持成人组织结构并指导形态发生事件。在血管内皮中,基于钙粘着蛋白的细胞粘附的动态调节对于血管发育至关重要。血管内皮(钙)-钙黏着蛋白是内皮粘附连接中的中心粘附分子,其调节对血管功能至关重要。 p120-catenin(p120)与钙粘蛋白结合并通过防止钙粘蛋白内吞和降解来调节钙粘蛋白水平。体内研究表明,血管发育需要p120,内皮细胞中缺少p120的小鼠在血管构图,屏障功能和增殖方面表现出严重缺陷。这些表型至少部分取决于在缺乏p120的血管中观察到的VE-钙粘蛋白的损失。本论文研究的主要目的是了解p120调节VE-钙粘蛋白内吞的机制。此处显示的研究表明,p120通过要求p120与钙粘蛋白细胞质尾结合的机制阻止VE-钙粘蛋白进入网格蛋白介导的内吞途径。我们证明p120阻止VE-钙粘着蛋白内在化,独立于其在调节RhoGTPase活性中的作用。相反,我们提供的证据表明,p120通过与网格蛋白衔接子AP-2竞争与VE-钙粘蛋白近膜域的相互作用来稳定质膜上的VE-钙粘蛋白。调节VE-钙黏着蛋白的内吞作用。 AP-2与VE-钙黏着蛋白胞质尾相互作用,并且是VE-钙黏着蛋白内吞作用所必需的。 VE-钙粘着蛋白近膜结构域中酪氨酸基序的突变损害了VE-钙粘着蛋白的内吞作用并降低了AP-2与VE-钙粘着蛋白尾巴结合的效率。这些发现支持了一种模型,其中p120结合VE-钙粘蛋白尾巴通过阻止与网格蛋白衔接子AP-2的相互作用抑制VE-钙粘蛋白进入网格蛋白介导的内吞途径。这些研究进一步阐明了p120的机制充当VE-钙粘蛋白表达的设定点,并建立一个研究热线,以调查VE-钙粘蛋白膜运输在血管发育过程中的作用,当它可能在调节血管生成过程中发生的血管生长和重组中起重要作用时。

著录项

  • 作者

    Chiasson, Christine.;

  • 作者单位

    Emory University.;

  • 授予单位 Emory University.;
  • 学科 Biology Cell.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:45

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