首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Role of Sialylated Glycans in Human Platelet Endothelial Cell Adhesion Molecule 1 (PECAM-1)-mediated Trans Homophilic Interactions and Endothelial Cell Barrier Function
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The Role of Sialylated Glycans in Human Platelet Endothelial Cell Adhesion Molecule 1 (PECAM-1)-mediated Trans Homophilic Interactions and Endothelial Cell Barrier Function

机译:唾液酸化聚糖在人类血小板内皮细胞粘附分子1(PECAM-1)介导的反亲血相互作用和内皮细胞屏障功能中的作用

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摘要

Platelet Endothelial Cell Adhesion Molecule 1 (PECAM-1) is a major component of the endothelial cell intercellular junction. Previous studies have shown that PECAM-1 homophilic interactions, mediated by amino-terminal immunoglobulin homology domain 1, contribute to maintenance of the vascular permeability barrier and to its re-establishment following inflammatory or thrombotic insult. PECAM-1 glycans account for ∼30% of its molecular mass, and the newly solved crystal structure of human PECAM-1 immunoglobulin homology domain 1 reveals that a glycan emanating from the asparagine residue at position 25 (Asn-25) is located within the trans homophilic-binding interface, suggesting a role for an Asn-25-associated glycan in PECAM-1 homophilic interactions. In support of this possibility, unbiased molecular docking studies revealed that negatively charged α2,3 sialic acid moieties bind tightly to a groove within the PECAM-1 homophilic interface in an orientation that favors the formation of an electrostatic bridge with positively charged Lys-89, mutation of which has been shown previously to disrupt PECAM-1-mediated homophilic binding. To verify the contribution of the Asn-25 glycan to endothelial barrier function, we generated an N25Q mutant form of PECAM-1 that is not glycosylated at this position and examined its ability to contribute to vascular integrity in endothelial cell-like REN cells. Confocal microscopy showed that although N25Q PECAM-1 concentrates normally at cell-cell junctions, the ability of this mutant form of PECAM-1 to support re-establishment of a permeability barrier following disruption with thrombin was significantly compromised. Taken together, these data suggest that a sialic acid-containing glycan emanating from Asn-25 reinforces dynamic endothelial cell-cell interactions by stabilizing the PECAM-1 homophilic binding interface.
机译:血小板内皮细胞粘附分子1(PECAM-1)是内皮细胞胞间连接的主要成分。先前的研究表明,由氨基末端免疫球蛋白同源结构域1介导的PECAM-1同源相互作用有助于维持血管通透性屏障,并在炎症或血栓形成的损伤后得以重建。 PECAM-1聚糖约占其分子质量的30%,新解析的人PECAM-1免疫球蛋白同源结构域1的晶体结构表明,由25位天冬酰胺残基(Asn-25)发出的聚糖位于分子内。反式同源结合界面,提示在PECAM-1同源相互作用中Asn-25相关聚糖的作用。为了支持这种可能性,无偏倚的分子对接研究表明,带负电的α2,3唾液酸部分牢固地结合在PECAM-1同质界面内的凹槽上,其取向有利于形成带正电的Lys-89的静电桥,先前已显示出其突变可破坏PECAM-1介导的同型结合。为了验证Asn-25聚糖对内皮屏障功能的贡献,我们生成了PECAM-1的N25Q突变体形式(在该位置未糖基化),并检查了其对内皮细胞样REN细胞中血管完整性做出贡献的能力。共聚焦显微镜显示,尽管N25Q PECAM-1正常集中在细胞-细胞连接处,但是这种凝血形式的PECAM-1突变体在凝血酶破坏后支持重建通透性屏障的能力受到严重损害。综上所述,这些数据表明从Asn-25发出的含唾液酸的聚糖通过稳定PECAM-1同源结合界面来增强动态内皮细胞之间的相互作用。

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