Functional significance of Tie2 signaling in the adult vasculature.

Kevin G Peters, Christopher D Kontos, P Charles Lin, Adrianne L Wong, Prema Rao, Liwen Huang, Mark W Dewhirst, Sabita Sankar
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引用次数: 174

Abstract

Abundant data now demonstrate that the growth of new blood vessels, termed angiogenesis, plays both pathological and beneficial roles in human disease. Based on these data, a tremendous effort has been undertaken to understand the molecular mechanisms that drive blood vessel growth in adult tissues. Tie2 recently was identified as a receptor tyrosine kinase expressed principally on vascular endothelium. Disrupting Tie2 function in mice resulted in embryonic lethality with defects in embryonic vasculature, suggesting a role in blood vessel maturation and maintenance. Based on these studies, we undertook a series of studies to probe the function of Tie2 in adult vasculature that will form the focus of this chapter. Consistent with a role in blood vessel growth in adult vasculature, Tie2 was upregulated and activated in the endothelium of rat ovary and in healing rat skin wounds, both areas of active angiogenesis. Moreover, Tie2 was upregulated in the endothelium of vascular "hot spots" in human breast cancer specimens. Surprisingly, Tie2 also was expressed and activated in the endothelium of all normal rat tissues examined, suggesting a role in maintenance of adult vasculature. To determine the functional role of Tie2 in tumor vasculature, a soluble Tie2 extracellular domain (ExTek) was designed that blocked the activation of Tie2 by its activating ligand, angiopoietin 1 (Ang1). Administration of recombinant ExTek protein or an ExTek adenovirus inhibited tumor growth and metastasis in rodent tumor models, demonstrating a functional role for Tie2 in pathological angiogenesis in adult tissues. To begin to understand the endothelial signaling pathways and cellular responses that mediate Tie2 function, we identified signaling molecules that are recruited to the activated, autophosphorylated Tie2 kinase domain. Two of these molecules, SHP2 and GRB2, are part of the pathway upstream of mitogen-activated protein kinase (MAPK) activation, a pathway that may be responsible for morphogenetic effects of Tie2 on endothelial cells. Another signaling molecule, p85, is responsible for recruitment of phosphatidylinositol 3 kinase (PI3-K) and activation of the Akt/PI3-K pathway. Akt/PI3-K has emerged as a critical pathway downstream of Tie2 that is necessary for cell survival effects as well as for chemotaxis, activation of endothelial nitric oxide synthase, and perhaps for anti-inflammatory effects of Tie2 activation. Taken together, these studies and many others demonstrate that the Tie2 pathway has important functions in adult tissues, in both quiescent vasculature and during angiogenesis, and help to validate the Tie2 pathway as a therapeutic target.

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Tie2信号在成人血管系统中的功能意义。
大量的数据表明,新血管的生长,即血管生成,在人类疾病中起着病理和有益的作用。基于这些数据,人们付出了巨大的努力来理解成人组织中驱动血管生长的分子机制。Tie2是一种主要在血管内皮表达的酪氨酸激酶受体。破坏小鼠的Tie2功能导致胚胎死亡,胚胎血管缺陷,提示其在血管成熟和维持中起作用。在这些研究的基础上,我们进行了一系列的研究来探讨Tie2在成人血管系统中的功能,这将成为本章的重点。与成人血管生长的作用一致,Tie2在大鼠卵巢内皮和愈合大鼠皮肤伤口中被上调和激活,这两个区域都是血管生成活跃的区域。此外,在人乳腺癌标本中,Tie2在血管“热点”的内皮中表达上调。令人惊讶的是,Tie2也在所有正常大鼠组织的内皮中表达和激活,这表明它在维持成年血管系统中起作用。为了确定Tie2在肿瘤血管系统中的功能作用,设计了一个可溶性的Tie2胞外结构域(ExTek),通过其激活配体血管生成素1 (Ang1)阻断Tie2的激活。重组ExTek蛋白或ExTek腺病毒在啮齿动物肿瘤模型中抑制肿瘤生长和转移,证明了Tie2在成人组织病理性血管生成中的功能作用。为了开始理解内皮信号通路和介导Tie2功能的细胞反应,我们确定了被募集到激活的自磷酸化的Tie2激酶结构域的信号分子。其中两个分子,SHP2和GRB2,是丝裂原活化蛋白激酶(MAPK)激活上游途径的一部分,MAPK激活可能是Tie2对内皮细胞的形态发生作用的途径。另一个信号分子p85负责磷脂酰肌醇3激酶(PI3-K)的募集和Akt/PI3-K通路的激活。Akt/PI3-K已成为Tie2下游的一个关键通路,它是细胞存活效应、趋化性、内皮一氧化氮合酶激活以及Tie2激活的抗炎作用所必需的。综上所述,这些研究和许多其他研究表明,Tie2途径在成人组织中,在静止脉管系统和血管生成过程中都具有重要功能,并有助于验证Tie2途径作为治疗靶点。
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