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Removal of the N-Glycosylation Sequon at Position N116 Located in p27 of the Respiratory Syncytial Virus Fusion Protein Elicits Enhanced Antibody Responses after DNA Immunization

机译:在DNA免疫后,在位于呼吸道合胞病毒融合蛋白的P27中的N116处的N-糖基化调度在DNA免疫后产生增强的抗体反应

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Prevention of severe lower respiratory tract infections in infants caused by the human respiratory syncytial virus (hRSV) remains a major public health priority. Currently, the major focus of vaccine development relies on the RSV fusion (F) protein since it is the main target protein for neutralizing antibodies induced by natural infection. The protein conserves 5 N-glycosylation sites, two of which are located in the F2 subunit (N27 and N70), one in the F1 subunit (N500) and two in the p27 peptide (N116 and N126). To study the influence of the loss of one or more N-glycosylation sites on RSV F immunogenicity, BALB/c mice were immunized with plasmids encoding RSV F glycomutants. In comparison with F WT DNA immunized mice, higher neutralizing titres were observed following immunization with F N116Q. Moreover, RSV A2-K-line19F challenge of mice that had been immunized with mutant F N116Q DNA was associated with lower RSV RNA levels compared with those in challenged WT F DNA immunized animals. Since p27 is assumed to be post-translationally released after cleavage and thus not present on the mature RSV F protein, it remains to be elucidated how deletion of this glycan can contribute to enhanced antibody responses and protection upon challenge. These findings provide new insights to improve the immunogenicity of RSV F in potential vaccine candidates.
机译:预防人类呼吸合胞病毒(HRSV)引起的婴儿严重的下呼吸道感染仍然是一个主要的公共卫生优先权。目前,疫苗开发的主要焦点依赖于RSV融合(F)蛋白,因为它是用于通过自然感染诱导的抗体的主要目标蛋白质。蛋白质保存5个N-糖基化位点,其中两个位于F2亚基(N27和N70)中,在F1亚基(N500)中,在P27肽(N116和N126)中。为了研究RSV F免疫原性对RSV F免疫原性的一种或多种N-糖基化位点的影响,用编码RSV F族糖剂的质粒免疫BALB / C小鼠。与F WT DNA免疫小鼠相比,在用F N116Q免疫后观察到更高的中和滴度。此外,与突变体F N116Q DNA免疫的RSV A2-K-LINE19F挑战与攻击的WTF DNA免疫动物的那些与较低的RSV RNA水平较低。由于P27被假定在切割后被翻译后释放,因此不存在于成熟的RSV F蛋白质,因此仍有待阐明该甘油的缺失如何有助于增强抗体应答和在攻击时保护。这些发现提供了新的见解,以改善潜在疫苗候选者中的RSV F的免疫原性。

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