Coëffier E, Excler J L, Kieny M P, Meignier B, Moste C, Tartaglia J, Pialoux G, Salmon-Céron D, Leclerc C
Unité de Biologie des Régulations Immunitaires, Institut Pasteur, Paris, France.
AIDS Res Hum Retroviruses. 1997 Nov 20;13(17):1471-85. doi: 10.1089/aid.1997.13.1471.
We analyzed the fine specificity of anti-V3 antibodies elicited in three different species (human, guinea pig, and macaque) by various HIV candidate vaccines. Following immunization with recombinant canarypox virus expressing gp160MN or with recombinant gp160MN/LAI, this antibody response was shown to be directed against the NH2-terminal region of the V3 loop. Although this response was increased by a prime-boost regimen using immunization with canarypox expressing gp160 followed by an rgp160 boost, its specificity remained restricted mainly to the recognition of this region of the V3 loop. Pepscan analysis of sera confirmed the results obtained by ELISA and allowed the definition of an immunodominant common binding site for these sera located within the sequence NKRKRIHIGPGR. In contrast to these results, a boost with the V3 peptide was shown to broaden the antibody response and pepscan analysis showed that sera from individuals boosted with the V3 synthetic peptide recognize determinants all along the V3 loop. Similar fine specificity of anti-V3 antibodies was obtained in human, guinea pig, and macaque following immunization by a prime-boost regimen using canarypox recombinants expressing gp160 or gp120 and purified rgp160. In contrast, a V3 synthetic peptide boost stimulated the production of antibodies that recognize multiple epitopes within the V3 loop. Because the induction of antibodies that recognize multiple sites in the V3 loop could be of major importance to neutralize different HIV isolates, these results may have implications for the design and selection of HIV candidate vaccines.
我们分析了多种HIV候选疫苗在三种不同物种(人类、豚鼠和猕猴)中引发的抗V3抗体的精细特异性。在用表达gp160MN的重组金丝雀痘病毒或重组gp160MN/LAI免疫后,这种抗体反应显示是针对V3环的NH2末端区域。尽管通过使用表达gp160的金丝雀痘病毒免疫后再用rgp160加强免疫的初免-加强方案可增强这种反应,但其特异性仍主要局限于对V3环该区域的识别。血清的Pepscan分析证实了ELISA获得的结果,并确定了这些血清在序列NKRKRIHIGPGR内的一个免疫显性共同结合位点。与这些结果相反,用V3肽加强免疫显示可拓宽抗体反应,Pepscan分析表明,用V3合成肽加强免疫的个体的血清可识别整个V3环上的决定簇。在用表达gp160或gp120的金丝雀痘重组体和纯化的rgp160进行初免-加强免疫方案免疫后,人类、豚鼠和猕猴中获得了类似的抗V3抗体精细特异性。相比之下,V3合成肽加强免疫刺激产生了能识别V3环内多个表位的抗体。由于诱导能识别V3环中多个位点的抗体对于中和不同的HIV分离株可能至关重要,这些结果可能对HIV候选疫苗的设计和选择有影响。