首页> 美国卫生研究院文献>PLoS Clinical Trials >The Molecular Balance between Receptor Tyrosine Kinases Tie1 and Tie2 Is Dynamically Controlled by VEGF and TNFα and Regulates Angiopoietin Signalling
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The Molecular Balance between Receptor Tyrosine Kinases Tie1 and Tie2 Is Dynamically Controlled by VEGF and TNFα and Regulates Angiopoietin Signalling

机译:受体酪氨酸激酶Tie1和Tie2之间的分子平衡是由VEGF和TNFα动态控制,并调节血管生成素信号传导。

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摘要

Angiopoietin-1 (Ang1) signals via the receptor tyrosine kinase Tie2 which exists in complex with the related protein Tie1 at the endothelial cell surface. Tie1 undergoes regulated ectodomain cleavage in response to phorbol esters, vascular endothelial growth factor (VEGF) and tumour necrosis factor-α (TNFα). Recently phorbol esters and VEGF were found also to stimulate ectodomain cleavage of Tie2. Here we investigate for the first time the effects of factors activating ectodomain cleavage on both Tie1 and Tie2 within the same population of cells, and their impact on angiopoietin signalling. We find that phorbol ester and VEGF activated Tie1 cleavage within minutes followed by restoration to control levels by 24 h. However, several hours of PMA and VEGF treatment were needed to elicit a detectable decrease in cellular Tie2, with complete loss seen at 24 h of PMA treatment. TNFα stimulated Tie1 cleavage, and induced a sustained decrease in cellular Tie1 over 24 h whilst increasing cellular Tie2. These differential effects of agonists on Tie1 and Tie2 result in dynamic modulation of the cellular Tie2∶Tie1 ratio. To assess the impact of this on Ang1 signalling cells were stimulated with VEGF and TNFα for differing times and Ang1-induced Tie2 phosphorylation examined. Elevated Tie2∶Tie1, in response to acute VEGF treatment or chronic TNFα, was associated with increased Ang1-activated Tie2 in cells. These data demonstrate cellular levels of Tie1 and Tie2 are differentially regulated by pathophysiologically relevant agonists resulting in dynamic control of the cellular Tie2∶Tie1 balance and modulation of Ang1 signalling. These findings highlight the importance of regulation of signalling at the level of the receptor. Such control may be an important adaptation to allow modulation of cellular signalling responses in systems in which the activating ligand is normally present in excess or where the ligand provides a constitutive maintenance signal.
机译:血管生成素-1(Ang1)通过受体酪氨酸激酶Tie2发出信号,酪氨酸激酶Tie2与相关蛋白Tie1复杂存在于内皮细胞表面。响应佛波酯,血管内皮生长因子(VEGF)和肿瘤坏死因子-α(TNFα),Tie1受到调节的胞外域裂解。最近,发现佛波酯和VEGF也刺激Tie2的胞外域裂解。在这里,我们首次调查了激活胞外域裂解的因素对同一细胞群体中Tie1和Tie2的影响,以及它们对血管生成素信号传导的影响。我们发现佛波酯和VEGF在几分钟内激活Tie1裂解,然后在24小时内恢复至对照水平。然而,需要数小时的PMA和VEGF处理才能引起可检测到的细胞Tie2降低,而在PMA处理24 h时完全消失。 TNFα刺激Tie1裂解,并诱导细胞Tie1在24小时内持续减少,同时增加细胞Tie2。激动剂对Tie1和Tie2的这些不同作用导致细胞Tie2∶Tie1比值的动态调节。为了评估其对Ang1信号转导的影响,用VEGF和TNFα刺激不同时间的细胞,并检查了Ang1诱导的Tie2磷酸化。 Tie2∶Tie1升高,响应急性VEGF治疗或慢性TNFα,与细胞中Ang1激活的Tie2升高有关。这些数据表明,Tie1和Tie2的细胞水平受到病理生理相关激动剂的差异调节,导致动态控制细胞Tie2∶Tie1平衡并调节Ang1信号传导。这些发现突出了在受体水平上调节信号传导的重要性。这种控制可能是重要的适应方法,以允许在激活配体通常过量存在或配体提供组成性维持信号的系统中调节细胞信号传导反应。

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