Buchanan M R, Bertomeu M C, Haas T A, Orr F W, Eltringham-Smith L L
Department of Pathology, McMaster University, Hamilton, Ontario, Canada.
Blood. 1993 Jun 15;81(12):3303-12.
Blood/vessel wall cell interactions depend, in part, on the expression of adhesion receptors on cell surfaces, such as expression of the vitronectin receptor (VnR) on the apical surface of endothelial cells (ECs) for platelet/EC adhesion. However, it is unclear how receptor expression is regulated from within cells. In previous studies, we found that ECs metabolize linoleic acid into the lipoxygenase monohydroxide, 13-hydroxyoctadecadienoic acid (13-HODE), and that the intracellular level of 13-HODE correlates inversely with VnR expression and platelet adhesion to the EC apical surface. In this study, we determined the physical associations of 13-HODE and VnR in unstimulated and stimulated ECs, ie, at times when ECs were and were not adhesive for specific ligands and platelets, using double antibody immunofluorescent staining techniques and binding assays. 13-HODE and the VnR were colocalized within unstimulated ECs. When ECs were stimulated, 13-HODE was no longer detectable, either in or outside the ECs, and the VnR was detected on the apical surface of the ECs. These changes were paralleled by increased vitronectin binding and increased platelet adhesion to the ECs. We suggest that colocalization of 13-HODE with VnR reflects a 13-HODE/VnR interaction, confining the VnR in a nonadhesive form inside unstimulated ECs, and, as a result, the ECs are nonadhesive. When the ECs are stimulated, 13-HODE and VnR dissociate, allowing the VnR to relocate on the EC surface, where the VnR undergoes a conformational change resulting in increased EC adhesivity.
血液/血管壁细胞间的相互作用部分取决于细胞表面黏附受体的表达,例如内皮细胞(EC)顶端表面玻连蛋白受体(VnR)的表达介导血小板与内皮细胞的黏附。然而,目前尚不清楚细胞内的受体表达是如何调控的。在之前的研究中,我们发现内皮细胞可将亚油酸代谢为脂氧合酶单氢氧化物,即13-羟基十八碳二烯酸(13-HODE),并且13-HODE的细胞内水平与VnR表达以及血小板与内皮细胞顶端表面的黏附呈负相关。在本研究中,我们采用双抗体免疫荧光染色技术和结合试验,确定了未受刺激和受刺激的内皮细胞中13-HODE与VnR的物理关联,即在特定配体和血小板存在或不存在黏附性时内皮细胞的状态。13-HODE与VnR在未受刺激的内皮细胞中共定位。当内皮细胞受到刺激时,无论是在内皮细胞内还是细胞外均无法检测到13-HODE,而在内皮细胞顶端表面可检测到VnR。这些变化伴随着玻连蛋白结合增加以及血小板与内皮细胞黏附增加。我们认为13-HODE与VnR的共定位反映了13-HODE/VnR相互作用,将VnR以非黏附形式限制在未受刺激的内皮细胞内,因此内皮细胞不具有黏附性。当内皮细胞受到刺激时,13-HODE与VnR解离,使得VnR重新定位到内皮细胞表面,在那里VnR发生构象变化,导致内皮细胞黏附性增加。