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通过破坏六螺旋束结构来调节HIV-1 gp41膜近端外部区域的免疫原性特性。

Modulating immunogenic properties of HIV-1 gp41 membrane-proximal external region by destabilizing six-helix bundle structure.

作者信息

Banerjee Saikat, Shi Heliang, Habte Habtom H, Qin Yali, Cho Michael W

机构信息

Department of Biomedical Sciences, College of Veterinary Medicine; and Center for Advanced Host Defenses, Immunobiotics and Translational Comparative Medicine, Iowa State University, Ames, IA 50011, United States.

Department of Biomedical Sciences, College of Veterinary Medicine; and Center for Advanced Host Defenses, Immunobiotics and Translational Comparative Medicine, Iowa State University, Ames, IA 50011, United States.

出版信息

Virology. 2016 Mar;490:17-26. doi: 10.1016/j.virol.2016.01.002. Epub 2016 Jan 21.

Abstract

The C-terminal alpha-helix of gp41 membrane-proximal external region (MPER; (671)NWFDITNWLWYIK(683)) encompassing 4E10/10E8 epitopes is an attractive target for HIV-1 vaccine development. We previously reported that gp41-HR1-54Q, a trimeric protein comprised of the MPER in the context of a stable six-helix bundle (6HB), induced strong immune responses against the helix, but antibodies were directed primarily against the non-neutralizing face of the helix. To better target 4E10/10E8 epitopes, we generated four putative fusion intermediates by introducing double point mutations or deletions in the heptad repeat region 1 (HR1) that destabilize 6HB in varying degrees. One variant, HR1-∆10-54K, elicited antibodies in rabbits that targeted W672, I675 and L679, which are critical for 4E10/10E8 recognition. Overall, the results demonstrated that altering structural parameters of 6HB can influence immunogenic properties of the MPER and antibody targeting. Further exploration of this strategy could allow development of immunogens that could lead to induction of 4E10/10E8-like antibodies.

摘要

包含4E10/10E8表位的gp41膜近端外部区域(MPER;(671)NWFDITNWLWYIK(683))的C末端α螺旋是HIV-1疫苗开发的一个有吸引力的靶点。我们之前报道过,gp41-HR1-54Q是一种三聚体蛋白,由处于稳定六螺旋束(6HB)结构中的MPER组成,它能诱导针对该螺旋的强烈免疫反应,但抗体主要针对螺旋的非中和面。为了更好地靶向4E10/10E8表位,我们通过在七肽重复区域1(HR1)引入双点突变或缺失,生成了四种假定的融合中间体,这些突变或缺失会不同程度地破坏6HB的稳定性。其中一个变体HR1-∆10-54K在兔子体内引发了针对W672、I675和L679的抗体,这些氨基酸对于4E10/10E8识别至关重要。总体而言,结果表明改变6HB的结构参数可以影响MPER的免疫原性特性和抗体靶向性。对该策略的进一步探索可能会开发出能够诱导产生4E10/10E8样抗体的免疫原。

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