首页> 美国卫生研究院文献>Journal of Virology >Conserved Surface-Exposed K/R-X-K/R Motifs and Net Positive Charge on Poxvirus Complement Control Proteins Serve as Putative Heparin Binding Sites and Contribute to Inhibition of Molecular Interactions with Human Endothelial Cells: a Novel Mechanism for Evasion of Host Defense
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Conserved Surface-Exposed K/R-X-K/R Motifs and Net Positive Charge on Poxvirus Complement Control Proteins Serve as Putative Heparin Binding Sites and Contribute to Inhibition of Molecular Interactions with Human Endothelial Cells: a Novel Mechanism for Evasion of Host Defense

机译:保守的表面暴露的K / R-X-K / R母体和痘病毒补体控制蛋白上的净正电荷作为推定的肝素结合位点发挥作用并有助于抑制与人类内皮细胞的分子相互作用:规避宿主防御的新机制

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摘要

Vaccinia virus complement control protein (VCP) has been shown to possess the ability to inhibit both classical and alternative complement pathway activation. The newly found ability of this protein to bind to heparin has been shown in previous studies to result in uptake by mast cells, possibly promoting tissue persistence. It has also been shown to reduce chemotactic migration of leukocytes by blocking chemokine binding. In addition, this study shows that VCP—through its ability to bind to glycosaminoglycans (heparin-like molecules) on the surface of human endothelial cells—is able to block antibody binding to surface major histocompatibility complex class I molecules. Since heparin binding is critical for many functions of this protein, we have attempted to characterize the molecular basis for this interaction. Segments of this protein, generated by genetic engineering of the DNA encoding VCP into the Pichia pastoris expression system, were used to localize the regions with heparin binding activity. These regions were then analyzed to more specifically define their properties for binding. It was found that the number of putative binding sites (K/R-X-K/R), the overall positive charge, and the percentage of positively charged amino acids within the protein were responsible for this interaction.
机译:牛痘病毒补体控制蛋白(VCP)已被证明具有抑制经典和替代补体途径激活的能力。先前的研究表明,这种蛋白质与肝素结合的新能力导致肥大细胞摄取,可能促进组织持久性。还已经显示出通过阻断趋化因子结合来减少白细胞的趋化性迁移。另外,这项研究表明,VCP通过结合人内皮细胞表面的糖胺聚糖(类肝素分子)的能力,能够阻断抗体与主要的组织相容性复合物I类分子的结合。由于肝素结合对于该蛋白的许多功能至关重要,因此我们试图表征这种相互作用的分子基础。该蛋白的片段是通过将编码VCP的DNA进行基因工程改造而生成的,该片段进入巴斯德毕赤酵母表达系统中,用于定位具有肝素结合活性的区域。然后分析这些区域以更具体地定义它们的结合特性。发现推定的结合位点的数量(K / R-X-K / R),蛋白质中的整体正电荷和带正电荷的氨基酸的百分比是这种相互作用的原因。

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