Effects of the Angiopoietins on Tie 2 Downregulation
Effects of the Angiopoietins on Tie 2 Downregulation
批准号:
6857349
负责人:
Christopher D Kontos
金额:
$19.25万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-09-30 至 2006-06-30
关键词:
中文摘要
描述(由申请人提供):Tie2是一种内皮特异性受体酪氨酸激酶(RTK),是正常胚胎血管发育和病理性血管生成所必需的。Tie2在rtk中是独特的,因为它的配体血管生成素具有明显相反的作用。血管生成素-1 (Angl)促进血管成熟和稳定,部分是通过阻止内皮粘附分子表达和血管通透性的增加。相反,Ang2似乎抑制Angl的血管稳定作用,在某些情况下,Ang2是血管生成所必需的。虽然在内皮细胞中已经发现了许多tie2介导的信号通路和细胞反应,但这些还不能充分解释Angl和Ang2之间的功能差异。然而,到目前为止,还没有研究调查Tie2下调的机制。大多数rtk以泛素依赖的方式下调,在大多数情况下,这一过程是由E3泛素连接酶c-Cbl介导的,c-Cbl可以直接与活化的rtk结合,从而影响受体泛素化、内化和随后的降解或再循环。内化和降解是受体功能负调控的重要机制。此外,有人提出,受体内化是激活一些积极信号通路所必需的。我们实验室的初步研究表明,在配体激活后,内皮细胞中Tie2泛素化并与c-Cbl相关。基于这些发现,我们假设Angl和Ang2对Tie2泛素化、内化和下调的调节存在差异,这些差异在一定程度上解释了血管生成素不同的功能作用。为了验证这一假设,本提案的具体目标是:1)确定Tie2泛素化的程度及其对Tie2半衰期和亚细胞定位的影响;2)确定c-Cbl在Tie2下调中的作用;3)确定泛素化是否导致Tie2信号和功能的调节。完成这些具体目标将有助于深入了解ang1和Ang2之间的功能差异。此外,了解这些蛋白质在血管生成过程中的差异作用将对我们治疗各种疾病的能力具有重要意义,包括肿瘤血管生成、糖尿病视网膜病变和缺血性心血管疾病。
英文摘要
DESCRIPTION (provided by applicant): Tie2 is an endothelium-specific receptor tyrosine kinase (RTK) that is required for both normal embryonic vascular development and pathological angiogenesis. Tie2 is unique among RTKs in that its ligands, the Angiopoietins, have apparently opposite actions. Angiopoietin-1 (Angl) promotes vascular maturation and stabilization, in part, by preventing increases in endothelial adhesion molecule expression and vascular permeability. In contrast, Ang2 appears to inhibit Angl's vascular stabilizing effects, and in some cases Ang2 is required for angiogenesis. Although a number of Tie2-mediated signaling pathways and cellular responses have been identified in endothelial cells, these have not sufficiently explained the functional differences between Angl and Ang2. To date, however, no studies have investigated the mechanisms by which Tie2 is downregulated. Most RTKs are downregulated in a ubiquitin-dependent fashion, and in most cases this process is mediated by the E3 ubiquitin ligase c-Cbl, c-Cbl can associate directly with activated RTKs, whereupon it effects receptor ubiquitination, internalization, and subsequent degradation or recycling. Internalization and degradation are important mechanisms by which receptor function is negatively regulated. Moreover, it has been proposed that receptor internalization is required for activation of some positive signaling pathways. Preliminary studies in our lab demonstrate that Tie2 is ubiquitinated and associates with c-Cbl in endothelial cells following ligand activation. Based on these findings, we hypothesize that Angl and Ang2 differentially regulate Tie2 ubiquitination, internalization, and downregulation, and that these differences are in part responsible for the distinct functional effects of the Angiopoietins. To test this hypothesis, the Specific Aims of this proposal are to: 1) Determine the extent of Tie2 ubiquitination and its effects on Tie2 half-life and subcellular localization; 2) Determine the role of c-Cbl in Tie2 downregulation; and 3) Determine whether ubiquitination results in modulation of Tie2 signaling and function. Accomplishing these Specific Aims will provide insights into the functional differences between Angl and Ang2. Furthermore, understanding these proteins' differential effects during angiogenesis will have important implications for our ability to treat a variety of conditions, including tumor angiogenesis, diabetic retinopathy, and ischemic cardiovascular diseases.
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Tie2 Activation for the Treatment of Chemical-Induced Acute Lung Injury
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依托单位:
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