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Receptor-Binding Properties of a Soluble Form of Human Cytomegalovirus Glycoprotein B

机译:人巨细胞病毒糖蛋白B的可溶性形式的受体结合特性。

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摘要

The human cytomegalovirus (HCMV) glycoprotein B (gB) (also known as gpUL55) homolog is an important mediator of virus entry and cell-to-cell dissemination of infection. To examine the potential ligand-binding properties of gB, a soluble form of gB (gB-S) was radiolabeled, purified, and tested in cell-binding experiments. Binding of gB-S to human fibroblast cells was found to occur in a dose-dependent, saturable, and specific manner. Scatchard analysis demonstrated a biphasic plot with the following estimated dissociation constants (Kd): Kd1, 4.96 × 10−6 M; Kd2, 3.07 × 10−7 M. Cell surface heparan sulfate proteoglycans (HSPGs) were determined to serve as one class of receptors able to facilitate gB-S binding. Both HSPG-deficient Chinese hamster ovary (CHO) cells and fibroblast cells with enzymatically removed HSPGs had 40% reductions in gB-S binding, whereas removal of chondroitin sulfate had no effect. However, a significant proportion of gB-S was able to associate with the cell surface in the absence of HSPGs via an undefined nonheparin component. Binding affinity analysis of gB-S binding to wild-type CHO-K1 cells demonstrated biphasic binding kinetics (Kd1, 9.85 × 10−6 M; Kd2, 4.03 × 10−8 M), whereas gB-S binding to HSPG-deficient CHO-677 cells exhibited single-component binding kinetics (Kd, 7.46 × 10−6 M). Together, these data suggest that gB-S associates with two classes of cellular receptors. The interaction of gB with its receptors is physiologically relevant, as evidenced by an inhibitory effect on HCMV entry when cells were pretreated with purified gB-S. This inhibition was determined to be manifested at the level of virus attachment. We conclude that gB is a ligand for HCMV that mediates an interaction with a cellular receptor(s) during HCMV infection.
机译:人巨细胞病毒(HCMV)糖蛋白B(gB)(也称为gpUL55)同源物是病毒进入和感染的细胞间传播的重要介体。为了检查gB的潜在配体结合特性,对可溶形式的gB(gB-S)进行了放射性标记,纯化并在细胞结合实验中进行了测试。发现gB-S与人成纤维细胞的结合以剂量依赖性,饱和性和特异性方式发生。斯卡查德分析显示出具有以下估计解离常数(Kd)的双相图:Kd1,4.96×10 -6 M; Kd2,3.07×10 −7 M。确定细胞表面硫酸乙酰肝素蛋白聚糖(HSPG)是一类能够促进gB-S结合的受体。缺少HSPG的中国仓鼠卵巢(CHO)细胞和经酶促去除HSPG的成纤维细胞均具有40%的gB-S结合减少,而去除硫酸软骨素则无作用。但是,在不存在HSPG的情况下,很大一部分的gB-S可以通过未定义的非肝素成分与细胞表面结合。 gB-S与野生型CHO-K1细胞的结合亲和力分析显示出两相结合动力学(Kd1,9.85×10 -6 M; Kd2,4.03×10 -8 M),而与HSPG缺陷型CHO-677细胞结合的gB-S表现出单组分结合动力学(Kd,7.46×10 -6 M)。这些数据共同表明,gB-S与两类细胞受体相关。 gB与其受体的相互作用在生理上是相关的,如当用纯化的gB-S预处理细胞时对HCMV进入的抑制作用所证明的。确定这种抑制作用表现在病毒附着水平上。我们得出的结论是,gB是HCMV的配体,可在HCMV感染过程中介导与细胞受体的相互作用。

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