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PG9/16 单克隆抗体对 HIV-1 刺突的抑制作用提示其三聚体单位存在协调激活模型。

Inhibition of the HIV-1 spike by single-PG9/16-antibody binding suggests a coordinated-activation model for its three protomeric units.

机构信息

Department of Biosciences and Nutrition, Karolinska Institute, Huddinge, Sweden.

出版信息

J Virol. 2013 Jun;87(12):7000-7. doi: 10.1128/JVI.00530-13. Epub 2013 Apr 17.

Abstract

The HIV-1 spike is composed of three protomeric units, each containing a peripheral gp120 and a transmembrane gp41 subunit. Binding to the CD4 and the chemokine receptors triggers them to mediate virus entry into cells by membrane fusion. The spikes also represent the major target for neutralizing antibodies (Abs) against the virus. We have studied how two related broadly neutralizing Abs, PG9 and PG16, react with the spike. Unexpectedly, this also suggested how the functions of the individual protomers in the spike depend on each other. The Abs have been shown to bind the V1/V2 loops of gp120, located at the top of the spike. Using blue native-polyacrylamide gel electrophoresis (BN-PAGE), we show that only single Abs or antigen-binding fragments could bind to the spikes of HIV-1 virus-like particles. Apparently, binding to one gp120 sterically interferes with binding to the other two subunits in the spike top. Despite this constraint, all of the protomers of the spike became resistant to CD4 binding and subsequent formation of the coreceptor binding site. These activities were measured by monitoring the sequential complex formation of the spike first with Abs and then with soluble 2d- or 4d-CD4 or with soluble CD4 and the CD4 inducible coreceptor binding site Ab 17b in BN-PAGE. The inhibition of the spike by single-Ab binding suggested that the activation reactions of the individual protomeric units are linked to each other in a coordinated activation process.

摘要

HIV-1 刺突由三个原聚体单位组成,每个单位包含一个外周 gp120 和一个跨膜 gp41 亚基。与 CD4 和趋化因子受体的结合触发它们通过膜融合介导病毒进入细胞。刺突也是针对病毒的中和抗体 (Abs) 的主要靶标。我们研究了两种相关的广泛中和 Abs,PG9 和 PG16,如何与刺突反应。出乎意料的是,这也表明了刺突中单个原聚体的功能如何相互依赖。这些 Abs 已被证明结合 gp120 的 V1/V2 环,位于刺突的顶部。使用蓝色 native-聚丙烯酰胺凝胶电泳 (BN-PAGE),我们表明只有单个 Abs 或抗原结合片段才能与 HIV-1 病毒样颗粒的刺突结合。显然,与一个 gp120 的结合在空间上干扰了与刺突顶部的其他两个亚基的结合。尽管存在这种限制,但刺突的所有原聚体都对 CD4 结合和随后形成共受体结合位点具有抗性。这些活性通过监测刺突首先与 Abs 然后与可溶性 2d-或 4d-CD4 或可溶性 CD4 和 CD4 诱导的共受体结合位点 Ab 17b 在 BN-PAGE 中的顺序复合形成来测量。单个 Ab 结合对刺突的抑制表明,单个原聚体单位的激活反应在协调的激活过程中相互关联。

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