首页> 美国卫生研究院文献>Journal of Virology >Effects of Human Metapneumovirus and Respiratory Syncytial Virus Antigen Insertion in Two 3′ Proximal Genome Positions of Bovine/Human Parainfluenza Virus Type 3 on Virus Replication and Immunogenicity
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Effects of Human Metapneumovirus and Respiratory Syncytial Virus Antigen Insertion in Two 3′ Proximal Genome Positions of Bovine/Human Parainfluenza Virus Type 3 on Virus Replication and Immunogenicity

机译:人间肺炎病毒和呼吸道合胞病毒抗原插入牛/人副流感病毒3型的两个3近端基因组位置对病毒复制和免疫原性的影响

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摘要

A live attenuated bovine parainfluenza virus type 3 (PIV3), harboring the fusion (F) and hemagglutinin-neuraminidase (HN) genes of human PIV3, was used as a virus vector to express surface glycoproteins derived from two human pathogens, human metapneumovirus (hMPV) and respiratory syncytial virus (RSV). RSV and hMPV are both paramyxoviruses that cause respiratory disease in young children, the elderly, and immunocompromised individuals. RSV has been known for decades to cause acute lower respiratory tract infections in young children, which often result in hospitalization, while hMPV has only been recently identified as a novel human respiratory pathogen. In this study, the ability of bovine/human PIV3 to express three different foreign transmembrane surface glycoproteins and to induce a protective immune response was evaluated. The RNA-dependent RNA polymerase of paramyxoviruses binds to a single site at the 3′ end of the viral RNA genome to initiate transcription of viral genes. The genome position of the viral gene determines its level of gene expression. The promoter-proximal gene is transcribed with the highest frequency, and each downstream gene is transcribed less often due to attenuation of transcription at each gene junction. This feature of paramyxoviruses was exploited using the PIV3 vector by inserting the foreign viral genes at the 3′ terminus, at position 1 or 2, of the viral RNA genome. These locations were expected to yield high levels of foreign viral protein expression stimulating a protective immune response. The immunogenicity and protection results obtained with a hamster model showed that bovine/human PIV3 can be employed to generate bivalent PIV3/RSV or PIV3/hMPV vaccine candidates that will be further evaluated for safety and efficacy in primates.
机译:带有人PIV3融合基因(F)和血凝素神经氨酸酶(HN)基因的3型活减毒牛副流感病毒(PIV3)被用作病毒载体来表达来源于两种人类病原体人类间质肺病毒(hMPV)的表面糖蛋白)和呼吸道合胞病毒(RSV)。 RSV和hMPV都是副粘病毒,可引起幼儿,老年人和免疫功能低下的人呼吸道疾病。几十年来,人们已经知道RSV会引起幼儿的急性下呼吸道感染,这通常会导致住院,而hMPV直到最近才被确定为一种新型的人类呼吸道病原体。在这项研究中,评估了牛/人PIV3表达三种不同外源跨膜表面糖蛋白并诱导保护性免疫应答的能力。副粘病毒的RNA依赖性RNA聚合酶与病毒RNA基因组3'端的单个位点结合,启动病毒基因的转录。病毒基因的基因组位置决定其基因表达水平。启动子附近的基因以最高的频率被转录,并且每个下游基因由于每个基因连接处转录的减弱而被较少地转录。使用PIV3载体,通过在病毒RNA基因组的1'或2位的3'末端插入外来病毒基因,来利用副粘病毒的这一特征。预计这些位置会产生高水平的外来病毒蛋白表达,从而刺激保护性免疫反应。用仓鼠模型获得的免疫原性和保护结果表明,牛/人PIV3可用于产生二价PIV3 / RSV或PIV3 / hMPV候选疫苗,将进一步评估灵长类动物的安全性和有效性。

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