Wehrle Christina, Van Slyke Paul, Dumont Daniel J
Division of Molecular and Cellular Biology Research, Sunnybrook Research Institute, Toronto, Ontario, Canada, M4N 3M5.
Biochem J. 2009 Oct 12;423(3):375-80. doi: 10.1042/BJ20091010.
Tie2 [where 'Tie' is an acronym from tyrosine kinase with Ig and EGF (epidermal growth factor) homology domains] is a receptor tyrosine kinase expressed predominantly on the surface of endothelial cells. Activated by its ligands, the angiopoietins, Tie2 initiates signalling pathways that modulate vascular stability and angiogenesis. Deletion of either the Tie2 or Ang1 (angiopoietin-1) gene in mice results in lethal vascular defects, signifying their importance in vascular development. The mechanism employed by the Tie2 signalling machinery to attenuate or cause receptor trafficking is not well defined. Stimulation of Tie2-expressing cells with Ang1 results in its ubiquitylation, suggesting that this may provide the necessary signal for receptor turnover. Using a candidate molecule approach, we demonstrate that Tie2 co-immunoprecipitates with c-Cbl in an Ang1-dependent manner and its ubiquitylation can be inhibited by the dominant-interfering molecule v-Cbl (a viral form of c-Cbl that contains only the tyrosine kinase-binding domain region). Inhibition of the Tie2-Cbl interaction by overexpression of v-Cbl blocks ligand-induced Tie2 internalization and degradation. In summary, our results illustrate that c-Cbl interacts with the Tie2 signalling complex in a stimulation-dependent manner, and that this interaction is required for Tie2 ubiquitylation, internalization and degradation.
Tie2 [其中“Tie”是酪氨酸激酶免疫球蛋白和表皮生长因子(EGF)同源结构域首字母的缩写] 是一种主要在内皮细胞表面表达的受体酪氨酸激酶。Tie2 被其配体血管生成素激活后,会启动调节血管稳定性和血管生成的信号通路。在小鼠中删除 Tie2 或血管生成素 -1(Ang1)基因会导致致命的血管缺陷,这表明它们在血管发育中具有重要作用。Tie2 信号机制用于减弱或引起受体转运的机制尚未明确。用 Ang1 刺激表达 Tie2 的细胞会导致其泛素化,这表明这可能为受体周转提供必要信号。我们采用候选分子方法证明,Tie2 以 Ang1 依赖的方式与 c-Cbl 共免疫沉淀,并且其泛素化可被显性干扰分子 v-Cbl(仅包含酪氨酸激酶结合结构域区域的 c-Cbl 的病毒形式)抑制。通过过表达 v-Cbl 抑制 Tie2 与 Cbl 的相互作用会阻断配体诱导的 Tie2 内化和降解。总之,我们的结果表明,c-Cbl 以刺激依赖的方式与 Tie2 信号复合物相互作用,并且这种相互作用是 Tie2 泛素化、内化和降解所必需的。