Senger D R, Ledbetter S R, Claffey K P, Papadopoulos-Sergiou A, Peruzzi C A, Detmar M
Department of Pathology, Beth Israel Hospital, Boston, Massachusetts, USA.
Am J Pathol. 1996 Jul;149(1):293-305.
We have identified several mechanisms by which the angiogenic cytokine vascular permeability factor/vascular endothelial growth factor (VPF/VEGF) likely regulates endothelial cells (EC) migration. VPF/VEGF induced dermal microvascular EC expression of mRNAs encoding the alphav and beta3 integrin subunits resulting in increased levels of the alphavbeta3 heterodimer at the cell surface, and VPF/VEGF also induced mRNA encoding osteopontin (OPN), an alphavbeta3 ligand. OPN promoted EC migration in vitro; and VPF/VEGF induction of alphavbeta3 was accompanied by increased EC migration toward OPN. Because thrombin cleavage of OPN results in substantial enhancement of OPN's adhesive properties, and because VPF/VEGF promotes increased microvascular permeability leading to activation of the extrinsic coagulation pathway, we also investigated whether VPF/VEGF facilitates thrombin cleavage of OPN in vivo. Consistent with this hypothesis, co-injection of VPF/VEGF together with OPN resulted in rapid cleavage of OPN by endogenous thrombin. Furthermore, in comparison with native OPN, thrombin-cleaved OPN stimulated a greater rate of EC migration in vitro, which was additive to the increased migration associated with induction of alpha v beta 3. Thus, these data demonstrate cooperative mechanisms for VPF/VEGF regulation of EC migration involving the alphavbeta3 integrin, the alphavbeta3 ligand OPN, and thrombin cleavage of OPN. These findings also illustrate an operational link between VPF/VEGF induction of EC gene expression and VPF/VEGF enhancement of microvascular permeability, suggesting that these distinct biological activities may act accordingly to stimulate EC migration during angiogenesis.
我们已经确定了血管生成细胞因子血管通透性因子/血管内皮生长因子(VPF/VEGF)可能调节内皮细胞(EC)迁移的几种机制。VPF/VEGF诱导真皮微血管EC表达编码αv和β3整合素亚基的mRNA,导致细胞表面αvβ3异二聚体水平升高,并且VPF/VEGF还诱导编码骨桥蛋白(OPN)(一种αvβ3配体)的mRNA。OPN在体外促进EC迁移;并且VPF/VEGF对αvβ3的诱导伴随着EC向OPN迁移的增加。由于OPN的凝血酶切割导致OPN黏附特性的显著增强,并且由于VPF/VEGF促进微血管通透性增加,导致外源性凝血途径的激活,我们还研究了VPF/VEGF是否在体内促进OPN的凝血酶切割。与该假设一致,VPF/VEGF与OPN共同注射导致内源性凝血酶对OPN的快速切割。此外,与天然OPN相比,凝血酶切割的OPN在体外刺激了更高的EC迁移速率,这与αvβ3诱导相关的迁移增加是相加的。因此,这些数据证明了VPF/VEGF调节EC迁移的协同机制,涉及αvβ3整合素、αvβ3配体OPN以及OPN的凝血酶切割。这些发现还说明了VPF/VEGF诱导EC基因表达与VPF/VEGF增强微血管通透性之间的操作联系,表明这些不同的生物学活性可能相应地起作用,以在血管生成过程中刺激EC迁移。