首页> 外文OA文献 >Stable Docking of Neutralizing Human Immunodeficiency Virus Type 1 gp41 Membrane-Proximal External Region Monoclonal Antibodies 2F5 and 4E10 Is Dependent on the Membrane Immersion Depth of Their Epitope Regions ▿
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Stable Docking of Neutralizing Human Immunodeficiency Virus Type 1 gp41 Membrane-Proximal External Region Monoclonal Antibodies 2F5 and 4E10 Is Dependent on the Membrane Immersion Depth of Their Epitope Regions ▿

机译:中和性人类免疫缺陷病毒1型gp41膜近端外部区域单克隆抗体2F5和4E10的稳定对接取决于其表位区域的膜浸入深度▿

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摘要

The binding of neutralizing antibodies 2F5 and 4E10 to human immunodeficiency virus type 1 (HIV-1) gp41 involves both the viral membrane and gp41 membrane proximal external region (MPER) epitopes. In this study, we have used several biophysical tools to examine the secondary structure, orientation, and depth of immersion of gp41 MPER peptides in liposomes and to determine how the orientation of the MPER with lipids affects the binding kinetics of monoclonal antibodies (MAbs) 2F5 and 4E10. The binding of 2F5 and 4E10 both to their respective nominal epitopes and to a biepitope (includes 2F5 and 4E10 epitopes) MPER peptide-liposome conjugate was best described by a two-step encounter-docking model. Analysis of the binding kinetics and the effect of temperature on the binding stability of 2F5 and 4E10 to MPER peptide-liposome conjugates revealed that the docking of 4E10 was relatively slower and thermodynamically less favorable. The results of fluorescence-quenching and fluorescence resonance energy transfer experiments showed that the 2F5 epitope was more solvent exposed, whereas the 4E10 epitope was immersed in the polar-apolar interfacial region of the lipid bilayer. A circular dichroism spectroscopic study demonstrated that the nominal epitope and biepitope MPER peptides adopted ordered structures with differing helical contents when anchored to liposomes. Furthermore, anchoring of MPER peptides to the membrane via a hydrophobic anchor sequence was required for efficient MAb docking. These results support the model that the ability of 2F5 and 4E10 to bind to membrane lipid is required for stable docking to membrane-embedded MPER residues. These data have important implications for the design and use of peptide-liposome conjugates as immunogens for the induction of MPER-neutralizing antibodies.
机译:中和抗体2F5和4E10与1型人类免疫缺陷病毒gp41的结合涉及病毒膜和gp41膜近端外部区域(MPER)表位。在这项研究中,我们使用了几种生物物理工具来检查gp41 MPER肽在脂质体中的二级结构,方向和浸入深度,并确定MPER与脂质的方向如何影响单克隆抗体(MAbs)2F5的结合动力学和4E10。 2F5和4E10与它们各自的标称表位和一个双表位(包括2F5和4E10表位)两者结合的MPER肽-脂质体结合物最好通过两步接触对接模型进行描述。分析结合动力学和温度对2F5和4E10与MPER肽-脂质体结合物结合稳定性的影响,发现4E10的对接相对较慢,热力学上较不利。荧光猝灭和荧光共振能量转移实验的结果表明,2F5表位更多地暴露在溶剂中,而4E10表位浸在脂质双层的极性-非极性界面区域中。圆二色性光谱研究表明,当固定在脂质体上时,标称表位和双表位MPER肽采用有序结构,螺旋含量不同。此外,有效的MAb对接需要通过疏水性锚定序列将MPER肽锚定到膜上。这些结果支持该模型,即2F5和4E10结合膜脂质的能力对于稳定地对接嵌入膜的MPER残基是必需的。这些数据对于肽脂质体缀合物的设计和使用作为诱导MPER中和抗体的免疫原具有重要意义。

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