School of Life Sciences, Tsinghua University, Beijing, China.
PLoS One. 2011 Mar 31;6(3):e18233. doi: 10.1371/journal.pone.0018233.
The membrane-proximal external region (MPER) of the HIV-1 gp41 consists of epitopes for the broadly cross-neutralizing monoclonal antibodies 2F5 and 4E10. However, antigens containing the linear sequence of these epitopes are unable to elicit potent and broad neutralizing antibody responses in vaccinated hosts, possibly because of inappropriate conformation of these epitopes. Here we designed a recombinant antigen, designated NCM, which comprises the N- and C-terminal heptad repeats that can form a six-helix bundle (6HB) core and the MPER domain of gp41. Two mutations (T569A and I675V) previously reported to expose the neutralization epitopes were introduced into NCM to generate mutants named NCM(TA), NCM(IV), and NCM(TAIV). Our results showed that NCM and its mutants could react with antibodies specific for 6HB and MPER of gp41, suggesting that these antigens are in the form of a trimer of heterodimer (i.e., 6HB) with three exposed MPER tails. Antigen with double mutations, NCM(TAIV), elicited much stronger antibody response in rabbits than immunogens with single mutation, NCM(TA) and NCM(IV), or no mutation, NCM. The purified MPER-specific antibodies induced by NCM(TAIV) exhibited broad neutralizing activity, while the purified 6HB-specific antibodies showed no detectable neutralizing activity. Our recombinant antigen design supported by an investigation of its underlying molecular mechanisms provides a strong scientific platform for the discovery of a gp41 MPER-based AIDS vaccine.
HIV-1 gp41 的膜近端外部区域(MPER)包含广泛中和单克隆抗体 2F5 和 4E10 的表位。然而,含有这些表位线性序列的抗原在接种宿主中不能引发有效的广泛中和抗体反应,可能是由于这些表位的构象不合适。在这里,我们设计了一种重组抗原,命名为 NCM,它包含能够形成六螺旋束(6HB)核心的 N 和 C 末端七肽重复序列和 gp41 的 MPER 结构域。我们引入了两个先前报道的突变(T569A 和 I675V)来暴露中和表位,生成了名为 NCM(TA)、NCM(IV)和 NCM(TAIV)的突变体。我们的结果表明,NCM 及其突变体可以与针对 gp41 6HB 和 MPER 的抗体发生反应,表明这些抗原是以三聚体异二聚体(即 6HB)的形式存在,具有三个暴露的 MPER 尾巴。具有双重突变的抗原 NCM(TAIV)在兔子中引发的抗体反应比具有单一突变的免疫原 NCM(TA)和 NCM(IV)或没有突变的 NCM 更强。由 NCM(TAIV)诱导的纯化的 MPER 特异性抗体表现出广泛的中和活性,而纯化的 6HB 特异性抗体没有显示出可检测的中和活性。我们的重组抗原设计得到了其潜在分子机制研究的支持,为发现基于 gp41 MPER 的艾滋病疫苗提供了强有力的科学平台。