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sCD4-17b bifunctional protein: Extremely broad and potent neutralization of HIV-1 Env pseudotyped viruses from genetically diverse primary isolates

机译:sCD4-17b双功能蛋白:来自遗传多样的原始分离株的HIV-1 Env假型病毒的极广泛和有效的中和作用

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Background We previously described a potent recombinant HIV-1 neutralizing protein, sCD4-17b, composed of soluble CD4 attached via a flexible polypeptide linker to an SCFv of the 17b human monoclonal antibody directed against the highly conserved CD4-induced bridging sheet of gp120 involved in coreceptor binding. The sCD4 moiety of the bifunctional protein binds to gp120 on free virions, thereby enabling the 17b SCFv moiety to bind and block the gp120/coreceptor interaction required for entry. The previous studies using the MAGI-CCR5 assay system indicated that sCD4-17b (in concentrated cell culture medium, or partially purified) potently neutralized several genetically diverse HIIV-1 primary isolates; however, at the concentrations tested it was ineffective against several other strains despite the conservation of binding sites for both CD4 and 17b. To address this puzzle, we designed variants of sCD4-17b with different linker lengths, and tested the neutralizing activities of the immunoaffinity purified proteins over a broader concentration range against a large number of genetically diverse HIV-1 primary isolates, using the TZM-bl Env pseudotype assay system. We also examined the sCD4-17b sensitivities of isogenic viruses generated from different producer cell types. Results We observed that immunoaffinity purified sCD4-17b effectively neutralized HIV-1 pseudotypes, including those from HIV-1 isolates previously found to be relatively insensitive in the MAGI-CCR5 assay. The potencies were equivalent for the original construct and a variant with a longer linker, as observed with both pseudotype particles and infectious virions; by contrast, a construct with a linker too short to enable simultaneous binding of the sCD4 and 17b SCFv moieties was much less effective. sCD4-17b displayed potent neutralizing activity against 100% of nearly 4 dozen HIV-1 primary isolates from diverse genetic subtypes (clades A, B, C, D, F, and circulating recombinant forms AE and AG). The neutralization breadth and potency were superior to what have been reported for the broadly neutralizing monoclonal antibodies IgG b12, 2G12, 2F5, and 4E10. The activity of sCD4-17b was found to be similar against isogenic virus particles from infectious molecular clones derived either directly from the transfected producer cell line or after a single passage through PBMCs; this contrasted with the monoclonal antibodies, which were less potent against the PMBC-passaged viruses. Conclusions The results highlight the extremely potent and broad neutralizing activity of sCD4-17b against genetically diverse HIV-1 primary isolates. The bifunctional protein has potential applications for antiviral approaches to combat HIV infection.
机译:背景技术我们先前描述了一种有效的重组HIV-1中和蛋白sCD4-17b,该蛋白由可溶性CD4组成,该CD4通过柔性多肽接头与17b人单克隆抗体的SCFv相连,该SCFv针对参与CD4诱导的gp120高度保守的桥接片核心受体结合。双功能蛋白的sCD4部分与游离病毒体上的gp120结合,从而使17b SCFv部分结合并阻断进入所需的gp120 /共受体相互作用。以前使用MAGI-CCR5分析系统进行的研究表明,sCD4-17b(在浓缩的细胞培养基中或部分纯化的溶液中)有效中和了几种遗传上不同的HIIV-1初级分离株。但是,在所测试的浓度下,尽管保留了CD4和17b的结合位点,但它对其他几种菌株均无效。为了解决这个难题,我们设计了具有不同接头长度的sCD4-17b变体,并使用TZM-bl在更大的浓度范围内测试了免疫亲和纯化蛋白对大量遗传多样的HIV-1主要分离株的中和活性。 Env假型分析系统。我们还检查了从不同生产者细胞类型产生的同基因病毒的sCD4-17b敏感性。结果我们观察到免疫亲和纯化的sCD4-17b有效中和了HIV-1假型,包括先前在MAGI-CCR5分析中相对不敏感的HIV-1分离株。如假型颗粒和感染性病毒体所观察到的,对于原始构建体和具有更长接头的变体而言,效力是等效的。相反,接头太短而无法同时结合sCD4和17b SCFv部分的构建体效果要差得多。 sCD4-17b对来自不同遗传亚型(A,B,C,D,F以及循环重组形式AE和AG)的近4打HIV-1主要分离株100%表现出有效的中和活性。中和广度和效力优于广泛中和的单克隆抗体IgG b12、2G12、2F5和4E10的报道。发现sCD4-17b的活性与直接来自转染的生产细胞系或单次通过PBMC的传染性分子克隆的同基因病毒颗粒相似。这与单克隆抗体相反,后者对PMBC传代病毒的效力较弱。结论结果突出了sCD4-17b对遗传多样的HIV-1主要分离株的极强和广泛的中和活性。该双功能蛋白具有潜在的抗病毒方法,可用于抗击HIV感染。

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