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甲型流感病毒中神经氨酸酶茎长度的生物学重要性

Biologic importance of neuraminidase stalk length in influenza A virus.

作者信息

Castrucci M R, Kawaoka Y

机构信息

Department of Virology and Molecular Biology, St. Jude Children's Research Hospital, Memphis, Tennessee 38101-0318.

出版信息

J Virol. 1993 Feb;67(2):759-64. doi: 10.1128/JVI.67.2.759-764.1993.

Abstract

To investigate the biologic importance of the neuraminidase (NA) stalk of influenza A virus, we generated mutant viruses of A/WSN/33 (H1N1) with stalks of various lengths (0 to 52 amino acids), by using the recently developed reverse genetics system. These mutant viruses, including one that lacked the entire stalk, replicated in tissue culture to the level of the parent virus, whose NA stalk contains 24 amino acid residues. In eggs, however, the length of the stalk was correlated with the efficiency of virus replication: the longer the stalk, the better the replication. This finding indicates that the length of the NA stalk affects the host range of influenza A viruses. The NA stalkless mutant was highly attenuated in mice; none of the animals died even after intranasal inoculation of 10(6) PFU of the virus (the dose of the parent virus required to kill 50% of mice was 10(2.5) PFU). Moreover, the stalkless mutant replicated only in the respiratory organs, whereas the parent virus caused systemic infection in mice. Thus, attenuation of the virus with the deletion of the entire NA stalk raises the possibility of its use as live vaccines.

摘要

为了研究甲型流感病毒神经氨酸酶(NA)柄部的生物学重要性,我们利用最近开发的反向遗传学系统,构建了具有不同长度(0至52个氨基酸)柄部的A/WSN/33(H1N1)突变病毒。这些突变病毒,包括一种缺失整个柄部的病毒,在组织培养中的复制水平与亲本病毒相当,亲本病毒的NA柄部含有24个氨基酸残基。然而,在鸡胚中,柄部长度与病毒复制效率相关:柄部越长,复制越好。这一发现表明,NA柄部的长度影响甲型流感病毒的宿主范围。无柄NA突变体在小鼠中高度减毒;即使鼻内接种10(6) PFU的该病毒(杀死50%小鼠所需的亲本病毒剂量为10(2.5) PFU),也没有动物死亡。此外,无柄突变体仅在呼吸器官中复制,而亲本病毒在小鼠中引起全身感染。因此,缺失整个NA柄部的病毒减毒增加了其用作活疫苗的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/424f/237428/6ed71916879d/jvirol00023-0147-a.jpg

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