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Induction of cytolytic T lymphocytes directed towards the V3 loop of the human immunodeficiency virus type 1 external glycoprotein gp120 by p55gag/V3 chimeric vaccinia viruses

机译:p55gag / V3嵌合痘苗病毒诱导针对人免疫缺陷病毒1型外部糖蛋白gp120的V3环的溶细胞性T淋巴细胞

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摘要

T cell-mediated cytotoxicity may play an important role in controlling infection by human immunodeficiency virus (HIV). In order to study the ability of rationally designed antigens to induce cytolytic T lymphocytes (CTLs) we replaced stretches of 30 to 50 amino acids at the p17-MA/p24-CA cleavage site, within the p24-CA moiety and within the p6-LI portion of the HIV type 1 p55gag precursor by the third variable domain (V3) of the external glycoprotein gp120. This site is known to be a target for CTL attack in mice and humans. The chimeric antigens were recombined into highly attenuated vaccinia viruses in order to investigate class I major histocompatibility complex (MHC)-restricted presentation of antigenic V3 peptides. Immunoprecipitation and Western blot analysis of the group-specific antigen (p55gag)/V3 chimeric proteins demonstrated significant differences in the accessibility of the V3 domain for a monoclonal antibody or polyclonal V3-specific antisera, depending on the position of the V3 loop within the p55gag carrier protein. Immunization of BALB/c mice with three variants of p55gag/V3 recombinant vaccinia virus, however, resulted in a comparable priming of CD4-CD8+ CTLs in vivo irrelevant of the position of the V3 loop within p55gag. Local conformational changes, including the V3 domain within the p55gag/V3 chimeras, did not demonstrate a significant effect on V3-specific lysis of the target cells when compared to the authentic gp120 envelope protein. Class I MHC-restricted CTLs induced by a V3 consensus sequence cross-reacted perfectly with the LAI strain-derived V3 loop sequence. These data indicate that the combination of selected epitopes (V3) with immunologically relevant complex carrier proteins (p55gag) can be accomplished without the loss of biological activity.
机译:T细胞介导的细胞毒性可能在控制人类免疫缺陷病毒(HIV)感染中起重要作用。为了研究合理设计的抗原诱导溶细胞性T淋巴细胞(CTL)的能力,我们替换了p17-MA / p24-CA切割位点,p24-CA部分和p6-内的30至50个氨基酸的片段。 HIV 1型p55gag前体的LI部分是外部糖蛋白gp120的第三个可变域(V3)。已知该位点是小鼠和人类CTL攻击的目标。为了研究I类主要组织相容性复合物(MHC)限制的抗原性V3肽呈递,将嵌合抗原重组到高度减毒的牛痘病毒中。组特异性抗原(p55gag)/ V3嵌合蛋白的免疫沉淀和Western印迹分析表明,取决于p55gag中V3环的位置,单克隆抗体或多克隆V3特异性抗血清的V3域可及性的显着差异载体蛋白。然而,用p55gag / V3重组痘苗病毒的三种变异体对BALB / c小鼠进行免疫,可导致体内CD4-CD8 + CTL的可比引发,而与p55gag中V3环的位置无关。与真实的gp120包膜蛋白相比,局部构象变化(包括p55gag / V3嵌合体中的V3结构域)未显示出对靶细胞V3特异性裂解的显着影响。由V3共有序列诱导的I类MHC限制性CTL与LAI株衍生的V3环序列完全交叉反应。这些数据表明,可以在不丧失生物学活性的情况下实现所选表位(V3)与免疫学相关的复杂载体蛋白(p55gag)的组合。

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