首页> 美国卫生研究院文献>Journal of Virology >Soluble Mimetics of Human Immunodeficiency Virus Type 1 Viral Spikes Produced by Replacement of the Native Trimerization Domain with a Heterologous Trimerization Motif: Characterization and Ligand Binding Analysis
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Soluble Mimetics of Human Immunodeficiency Virus Type 1 Viral Spikes Produced by Replacement of the Native Trimerization Domain with a Heterologous Trimerization Motif: Characterization and Ligand Binding Analysis

机译:通过将天然三聚化结构域替换为人免疫缺陷病毒1型病毒性穗状病毒的可溶性模拟物 异源三聚化基序:表征和配体结合分析。

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摘要

The human immunodeficiency virus type 1 (HIV-1) exterior envelope glycoprotein, gp120, mediates binding to the viral receptors and, along with the transmembrane glycoprotein gp41, is a major target for neutralizing antibodies. We asked whether replacing the gp41 fusion/trimerization domain with a stable trimerization motif might lead to a more stable gp120 trimer that would be amenable to structural and immunologic analysis. To obtain stable gp120 trimers, a heterologous trimerization motif, GCN4, was appended to the C terminus of YU2gp120. Biochemical analysis indicated that the gp120-GCN4 trimers were superior to gp140 molecules in their initial homogeneity, and trilobed structures were observable by electron microscopy. Biophysical analysis of gp120-GCN4 trimers by isothermal titration calorimetry (ITC) and ultracentrifugation analyses indicated that most likely two molecules of soluble CD4 could bind to one gp120-GCN4 trimer. To further examine restricted CD4 stoichiometric binding to the gp120-GCN4 trimers, we generated a low-affinity CD4 binding trimer by introducing a D457V change in the CD4 binding site of each gp120 monomeric subunit. The mutant trimers could definitively bind only one soluble CD4 molecule, as determined by ITC and sedimentation equilibrium centrifugation. These data indicate that there are weak interactions between the gp120 monomeric subunits of the GCN4-stabilized trimers that can be detected by low-affinity ligand sensing. By similar analysis, we also determined that removal of the variable loops V1, V2, and V3 in the context of the gp120-GCN4 proteins allowed the binding of three CD4 molecules per trimer. Interestingly, both the gp120-GCN4 variants displayed a restricted stoichiometry for the CD4-induced antibody 17b of one antibody molecule binding per trimer. This restriction was not evident upon removal of the variable loops V1 and V2 loops, consistent with conformational constraints in the wild-type gp120 trimers and similar to those inherent in the functional Env spike. Thus, the gp120-GCN4 trimers demonstrate several properties that are consistent with some of those anticipated for gp120 in the context of the viral spike.
机译:人类1型免疫缺陷病毒(HIV-1)外膜糖蛋白gp120介导与病毒受体的结合,并且与跨膜糖蛋白gp41一起是中和抗体的主要目标。我们询问是否用稳定的三聚化基序替换gp41融合/三聚化结构域是否可能导致更稳定的gp120三聚体,从而适合结构和免疫学分析。为了获得稳定的gp120三聚体,将异源三聚化基序GCN4附加到YU2gp120的C末端。生化分析表明,gp120-GCN4三聚体的初始均一性优于gp140分子,并且通过电子显微镜可观察到三叶结构。 gp120-GCN4三聚体的生物物理分析通过等温滴定热分析(ITC)和超速离心分析表明,最有可能的两个可溶性CD4分子可以与一个gp120-GCN4三聚体结合。为了进一步检查与gp120-GCN4三聚体的受限​​CD4化学计量结合,我们通过在每个gp120单体亚基的CD4结合位点引入D457V改变,生成了低亲和力的CD4结合三聚体。通过ITC和沉降平衡离心法测定,突变体三聚体只能确定地结合一个可溶性CD4分子。这些数据表明,可以通过低亲和力配体感应检测到GCN4稳定的三聚体的gp120单体亚基之间存在弱相互作用。通过类似的分析,我们还确定,在gp120-GCN4蛋白的情况下,除去可变环V1,V2和V3可使每个三聚体结合三个CD4分子。有趣的是,两个gp120-GCN4变体对于每个三聚体结合一个抗体分子的CD4诱导的抗体17b都显示出受限的化学计量。这种限制在删除可变环V1和V2环后并不明显,这与野生型gp120三聚体中的构象约束一致,并且与功能性Env尖峰所固有的相似。因此,gp120-GCN4三聚体显示出与在病毒峰值的情况下预期用于gp120的某些特性一致的一些特性。

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