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血管内皮生长因子受体-1(VEGFR-1)与血管内皮生长因子受体-2(VEGFR-2)之间的异源二聚化而非VEGFR-1的同源二聚体抑制VEGFR-2活性。

Heterodimerisation between VEGFR-1 and VEGFR-2 and not the homodimers of VEGFR-1 inhibit VEGFR-2 activity.

作者信息

Cai Meng, Wang Keqing, Murdoch Colin E, Gu Yuchun, Ahmed Asif

机构信息

Aston Medical Research Institute, Aston Medical School, Aston University, Aston Triangle, Birmingham B4 7ET, United Kingdom.

Aston Medical Research Institute, Aston Medical School, Aston University, Aston Triangle, Birmingham B4 7ET, United Kingdom; Institute of Molecular Medicine, Peking University, Beijing 100871, China.

出版信息

Vascul Pharmacol. 2017 Jan;88:11-20. doi: 10.1016/j.vph.2016.11.007. Epub 2016 Nov 22.

Abstract

Vascular endothelial growth factor (VEGF) signaling is tightly regulated by specific VEGF receptors (VEGF-R). Recently, we identified heterodimerisation between VEGFR-1 and VEGFR-2 (VEGFR) to regulate VEGFR-2 function. However, both the mechanism of action and the relationship with VEGFR-1 homodimers remain unknown. The current study shows that activation of VEGFR, but not VEGFR-1 homodimers, inhibits VEGFR-2 receptor phosphorylation under VEGF stimulation in human endothelial cells. Furthermore, inhibition of phosphatidylinositol 3-kinase (PI3K) increases VEGFR-2 phosphorylation under VEGF stimulation. More importantly, inhibition of PI3K pathway abolishes the VEGFR mediated inhibition of VEGFR-2 phosphorylation. We further demonstrate that inhibition of PI3K pathway promotes capillary tube formation. Finally, the inhibition of PI3K abrogates the inhibition of in vitro angiogenesis mediated by VEGFR heterodimers. These findings demonstrate that VEGFR heterodimers and not VEGFR-1 homodimers inhibit VEGF-VEGFR-2 signaling by suppressing VEGFR-2 phosphorylation via PI3K pathway.

摘要

血管内皮生长因子(VEGF)信号传导由特定的VEGF受体(VEGF-R)严格调控。最近,我们发现VEGFR-1和VEGFR-2(VEGFR)之间的异二聚化可调节VEGFR-2的功能。然而,其作用机制以及与VEGFR-1同二聚体的关系仍不清楚。当前研究表明,在人内皮细胞中,VEGF刺激下VEGFR的激活而非VEGFR-1同二聚体可抑制VEGFR-2受体磷酸化。此外,磷脂酰肌醇3激酶(PI3K)的抑制在VEGF刺激下会增加VEGFR-2磷酸化。更重要的是,PI3K途径的抑制消除了VEGFR介导的VEGFR-2磷酸化抑制。我们进一步证明,PI3K途径的抑制促进毛细血管管形成。最后,PI3K的抑制消除了VEGFR异二聚体介导的体外血管生成抑制。这些发现表明,VEGFR异二聚体而非VEGFR-1同二聚体通过PI3K途径抑制VEGFR-2磷酸化来抑制VEGF-VEGFR-2信号传导。

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