From the La Jolla Bioengineering Institute, San Diego, California 92121.
J Biol Chem. 2014 Mar 14;289(11):7413-24. doi: 10.1074/jbc.M113.542514. Epub 2014 Feb 4.
The endothelial cell-cell junction has emerged as a major cell signaling structure that responds to shear stress by eliciting the activation of signaling pathways. Platelet endothelial cell adhesion molecule-1 (PECAM-1) and heterotrimeric G protein subunits Gαq and 11 (Gαq/11) are junctional proteins that have been independently proposed as mechanosensors. Our previous findings suggest that they form a mechanosensitive junctional complex that discriminates between different flow profiles. The nature of the PECAM-1·Gαq/11 interaction is still unclear although it is likely an indirect association. Here, we investigated the role of heparan sulfates (HS) in mediating this interaction and in regulating downstream signaling in response to flow. Co-immunoprecipitation studies show that PECAM-1·Gαq/11 binding is dramatically decreased by competitive inhibition with heparin, pharmacological inhibition with the HS antagonist surfen, and enzymatic removal of HS chains with heparinase III treatment as well as by site-directed mutagenesis of basic residues within the extracellular domain of PECAM-1. Using an in situ proximity ligation assay, we show that endogenous PECAM-1·Gαq/11 interactions in endothelial cells are disrupted by both competitive inhibition and HS degradation. Furthermore, we identified the heparan sulfate proteoglycan syndecan-1 in complexes with PECAM-1 that are rapidly decreased in response to flow. Finally, we demonstrate that flow-induced Akt activation is attenuated in endothelial cells in which PECAM-1 was knocked down and reconstituted with a binding mutant. Taken together, our results indicate that the PECAM-1·Gαq/11 mechanosensitive complex contains an endogenous heparan sulfate proteoglycan with HS chains that is critical for junctional complex assembly and regulating the flow response.
内皮细胞-细胞连接已成为一种主要的细胞信号结构,通过激活信号通路对切应力做出反应。血小板内皮细胞黏附分子-1(PECAM-1)和异三聚体 G 蛋白亚基 Gαq 和 11(Gαq/11)是连接蛋白,它们被独立地提出作为机械感受器。我们之前的研究结果表明,它们形成了一个机械敏感的连接复合物,可以区分不同的流动模式。PECAM-1·Gαq/11 相互作用的性质尚不清楚,尽管它可能是一种间接的关联。在这里,我们研究了肝素硫酸酯(HS)在介导这种相互作用以及调节下游信号对流动反应中的作用。共免疫沉淀研究表明,PECAM-1·Gαq/11 结合通过与肝素的竞争抑制、HS 拮抗剂 surfen 的药理学抑制、肝素酶 III 处理去除 HS 链以及 PECAM-1 细胞外结构域中碱性残基的定点突变而显著降低。使用原位邻近连接测定法,我们表明内皮细胞中内源性 PECAM-1·Gαq/11 相互作用被竞争抑制和 HS 降解所破坏。此外,我们鉴定了与 PECAM-1 结合的硫酸乙酰肝素蛋白聚糖 syndecan-1,它在响应流动时迅速减少。最后,我们证明在敲低 PECAM-1 并用结合突变体重建的内皮细胞中,流动诱导的 Akt 激活被减弱。总之,我们的结果表明,PECAM-1·Gαq/11 机械敏感复合物包含一种内源性肝素硫酸酯蛋白聚糖,其 HS 链对于连接复合物组装和调节流动反应至关重要。