Dusserre N, L'Heureux N, Bell K S, Stevens H Y, Yeh J, Otte L A, Loufrani L, Frangos J A
Department of Bioengineering, University of California San Diego, La Jolla, Calif, USA.
Arterioscler Thromb Vasc Biol. 2004 Oct;24(10):1796-802. doi: 10.1161/01.ATV.0000141133.32496.41. Epub 2004 Jul 29.
We have previously shown that fluid shear stress (FSS) triggers endothelial nitric oxide synthase (eNOS) activity in endothelial cells and that the mechanotransduction mechanisms responsible for activation discriminate between rapid changes in FSS and FSS per se. We hypothesized that the particular sublocalization of eNOS at the cell-cell junction would render it responsive to activation by FSS temporal gradients.
In human umbilical vein endothelial cells (HUVECs), immunofluorescence revealed strong eNOS membrane staining at the cell-cell junction colocalizing with platelet/endothelial cell adhesion molecule-1 (PECAM-1). In PECAM-1-/- mouse aorta, eNOS junctional localization seen in the wild type was absent. Similarly, junctional staining was lost in wild-type aorta near intercostal artery branches. eNOS/PECAM-1 association in HUVECs was confirmed by coimmunoprecipitation. When HUVECs were subjected to a 0.5s impulse of 12 dynes/cm2, a transient disruption of the eNOS/PECAM-1 complex was observed, accompanied by an increase in eNOS activity (cGMP production). Ramped flow did not trigger complex dissociation or an increase in cGMP production. In a cell-free system, a direct inhibition of eNOS activity by PECAM-1 is shown.
These results suggest that eNOS is complexed with PECAM-1 at the cell-cell junction and is likely involved in the modulation of eNOS activity by FSS temporal gradients but not by FSS itself.
我们之前已经表明,流体剪切应力(FSS)可触发内皮细胞中的内皮型一氧化氮合酶(eNOS)活性,且负责激活的机械转导机制能够区分FSS的快速变化和FSS本身。我们推测,eNOS在细胞间连接处的特定亚定位会使其对FSS时间梯度的激活产生反应。
在人脐静脉内皮细胞(HUVECs)中,免疫荧光显示细胞间连接处有强烈的eNOS膜染色,与血小板/内皮细胞黏附分子-1(PECAM-1)共定位。在PECAM-1基因敲除小鼠的主动脉中,未观察到野生型中出现的eNOS连接处定位。同样,在肋间动脉分支附近的野生型主动脉中,连接处染色消失。通过共免疫沉淀证实了HUVECs中eNOS/PECAM-1的结合。当HUVECs受到12达因/平方厘米的0.5秒脉冲作用时,观察到eNOS/PECAM-1复合物的短暂破坏,同时伴有eNOS活性增加(cGMP生成)。斜坡流未触发复合物解离或cGMP生成增加。在无细胞系统中,显示了PECAM-1对eNOS活性的直接抑制作用。
这些结果表明,eNOS在细胞间连接处与PECAM-1形成复合物,可能参与FSS时间梯度而非FSS本身对eNOS活性的调节。