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Characterization of Recombinant Respiratory Syncytial Viruses with the Region Responsible for Type 2 T-Cell Responses and Pulmonary Eosinophilia Deleted from the Attachment (G) Protein

机译:重组呼吸道合胞病毒的特征,该区域负责从附件(G)蛋白中删除的2型T细胞反应和肺嗜酸性粒细胞增多

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摘要

It is essential that preventative vaccines for respiratory syncytial virus (RSV) elicit balanced T-cell responses. Immune responses dominated by type 2 T cells against RSV antigens are believed to cause exaggerated respiratory tract disease and may also contribute to unwanted inflammation in the airways that predisposes infants to wheeze through adolescence. Here we report on the construction and characterization of recombinant RSV (rRSV) strains with amino acids 151 to 221 or 178 to 219 of the attachment (G) glycoprotein deleted (rA2cpΔG150-222 or rA2cpΔG177-220, respectively). The central ectodomain was chosen for modification because a peptide spanning amino acids 149 to 200 of G protein has recently been shown to prime several strains of naïve inbred mice for polarized type 2 T-cell responses, and peripheral blood T cells from most human donors recognize epitopes within this region. Quantitative PCR demonstrated that synthesis of nascent rRSV genomes in human lung epithelial cell lines was similar to that for the parent virus (cp-RSV). Plaque assays further indicated that rRSV replication was not sensitive to 37°C, but pinpoint morphology was observed at 39°C. Both rRSV strains replicated in the respiratory tracts of BALB/c mice and elicited serum neutralization and anti-F-protein immunoglobulin G titers that were equivalent to those elicited by cp-RSV and contributed to a 3.9-log10-unit reduction in RSV A2 levels 4 days after challenge. Importantly, pulmonary eosinophilia was significantly diminished in BALB/c mice primed with native G protein and challenged with either rA2cpΔG150-222 or rA2cpΔG177-220. These findings are important for the development of attenuated RSV vaccines.
机译:预防呼吸道合胞病毒(RSV)的预防性疫苗引起平衡的T细胞反应至关重要。人们认为,以2型T细胞为主的针对RSV抗原的免疫反应会导致呼吸道疾病夸大,并且还可能导致气道中的有害炎症,从而使婴儿容易青春期喘息。在这里,我们报告的重组RSV(rRSV)菌株的结构和特征,其附着(G)糖蛋白的氨基酸151至221或178至219缺失(分别为rA2cpΔG150-222或rA2cpΔG177-220)。选择中央胞外域进行修饰是因为最近已显示出一个跨度为G蛋白149至200氨基酸的肽可引发几种幼稚近交小鼠品系的极化2型T细胞反应,并且大多数人类供体的外周血T细胞都可以识别该区域内的抗原决定簇。定量PCR显示,人肺上皮细胞系中新生rRSV基因组的合成与亲本病毒(cp-RSV)相似。噬菌斑测定进一步表明rRSV复制对37℃不敏感,但是在39℃观察到精确的形态。两种rRSV毒株均在BALB / c小鼠的呼吸道中复制,并引起血清中和和抗F蛋白免疫球蛋白G滴度,与cp-RSV引起的滴度相当,并导致RSV A2水平降低3.9log10个单位挑战后4天。重要的是,在用天然G蛋白引发并用rA2cpΔG150-222或rA2cpΔG177-220攻击的BALB / c小鼠中,肺嗜酸性粒细胞增多明显减少。这些发现对于减毒RSV疫苗的开发很重要。

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