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用H5N1和甲型H1N1大流行性流感病毒的重组神经氨酸酶蛋白免疫引发的交叉反应性神经氨酸酶抑制抗体。

Cross-Reactive Neuraminidase-Inhibiting Antibodies Elicited by Immunization with Recombinant Neuraminidase Proteins of H5N1 and Pandemic H1N1 Influenza A Viruses.

作者信息

Liu Wen-Chun, Lin Chia-Ying, Tsou Yung-Ta, Jan Jia-Tsrong, Wu Suh-Chin

机构信息

Institute of Biotechnology, Department of Life Science, National Tsing Hua University, Hsinchu, Taiwan.

Genomics Research Center, Academia Sinica, Taipei, Taiwan.

出版信息

J Virol. 2015 Jul;89(14):7224-34. doi: 10.1128/JVI.00585-15. Epub 2015 May 6.

Abstract

UNLABELLED

Neuraminidase (NA), an influenza virus envelope glycoprotein, removes sialic acid from receptors for virus release from infected cells. For this study, we used a baculovirus-insect cell expression system to construct and purify recombinant NA (rNA) proteins of H5N1 (A/Vietnam/1203/2004) and pandemic H1N1 (pH1N1) (A/Texas/05/2009) influenza viruses. BALB/c mice immunized with these proteins had high titers of NA-specific IgG and NA-inhibiting (NI) antibodies against H5N1, pH1N1, H3N2, and H7N9 viruses. H5N1 rNA immunization resulted in higher quantities of NA-specific antibody-secreting B cells against H5N1 and heterologous pH1N1 viruses in the spleen. H5N1 rNA and pH1N1 rNA immunizations both provided complete protection against homologous virus challenges, with H5N1 rNA immunization providing better protection against pH1N1 virus challenges. Cross-reactive NI antibodies were further dissected via pH1N1 rNA protein immunizations with I149V (NA with a change of Ile to Val at position 149), N344Y, and I365T/S366N NA mutations. The I365T/S366N mutation of pH1N1 rNA enhanced cross-reactive NI antibodies against H5N1, H3N2, and H7N9 viruses. It is our hope that these findings provide useful information for the development of an NA-based universal influenza vaccine.

IMPORTANCE

Neuraminidase (NA) is an influenza virus enzymatic protein that cleaves sialic acid linkages on infected cell surfaces, thus facilitating viral release and contributing to viral transmission and mucus infection. In currently available inactivated or live, attenuated influenza vaccines based on the antigenic content of hemagglutinin proteins, vaccine efficacy can be contributed partly through NA-elicited immune responses. We investigated the NA immunity of different recombinant NA (rNA) proteins associated with pH1N1 and H5N1 viruses. Our results indicate that H5N1 rNA immunization induced more potent cross-protective immunity than pH1N1 rNA immunization, and three mutated residues, I149V, I365T, and S366N, near the NA enzyme active site(s) are linked to enhanced cross-reactive NA-inhibiting antibodies against heterologous and heterosubtypic influenza A viruses. These findings provide useful information for the development of an NA-based universal influenza vaccine.

摘要

未标记

神经氨酸酶(NA)是一种流感病毒包膜糖蛋白,可从受体上移除唾液酸,以使病毒从受感染细胞中释放出来。在本研究中,我们使用杆状病毒-昆虫细胞表达系统构建并纯化了H5N1(A/越南/1203/2004)和大流行性H1N1(pH1N1)(A/得克萨斯/05/2009)流感病毒的重组NA(rNA)蛋白。用这些蛋白免疫的BALB/c小鼠针对H5N1、pH1N1、H3N2和H7N9病毒产生了高滴度的NA特异性IgG和NA抑制(NI)抗体。H5N1 rNA免疫导致脾脏中针对H5N1和异源pH1N1病毒的NA特异性抗体分泌B细胞数量增加。H5N1 rNA和pH1N1 rNA免疫均提供了针对同源病毒攻击的完全保护,其中H5N1 rNA免疫对pH1N1病毒攻击提供了更好的保护。通过用I149V(第149位异亮氨酸变为缬氨酸的NA)、N344Y和I365T/S366N NA突变体的pH1N1 rNA蛋白免疫,进一步剖析了交叉反应性NI抗体。pH1N1 rNA的I365T/S366N突变增强了针对H5N1、H3N2和H7N9病毒的交叉反应性NI抗体。我们希望这些发现为基于NA的通用流感疫苗的开发提供有用信息。

重要性

神经氨酸酶(NA)是一种流感病毒酶蛋白,可切割受感染细胞表面的唾液酸连接,从而促进病毒释放并有助于病毒传播和黏液感染。在目前基于血凝素蛋白抗原含量的灭活或减毒活流感疫苗中,疫苗效力可部分通过NA引发的免疫反应来实现。我们研究了与pH1N1和H5N1病毒相关的不同重组NA(rNA)蛋白的NA免疫性。我们的结果表明,H5N1 rNA免疫诱导的交叉保护免疫比pH1N1 rNA免疫更强,并且NA酶活性位点附近的三个突变残基I149V、I365T和S366N与针对异源和异亚型甲型流感病毒的交叉反应性NA抑制抗体增强有关。这些发现为基于NA的通用流感疫苗的开发提供了有用信息。

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