首页> 外文期刊>Medical Microbiology and Immunology >The properties of recombinant Sendai virus having the P gene of Sendai virus pi strain derived from BHK cells persistently infected with Sendai virus.
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The properties of recombinant Sendai virus having the P gene of Sendai virus pi strain derived from BHK cells persistently infected with Sendai virus.

机译:具有源于持续感染仙台病毒的BHK细胞的仙台病毒pi株的P基因的重组仙台病毒的特性。

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We prepared the chimeric recombinant Sendai virus [rSeV(Ppi)] by replacing the P gene of the Z strain with that of pi strain for analyzing the function of Ppi, Vpi and Cpi proteins. Intriguingly, HA production by rSeV(Ppi) is significantly lower at 38 degrees C than at 32 degrees C, showing that virus growth of rSeV(Ppi) is slightly suppressed at 38 degrees C. However, the main phenotypes of SeVpi, a marked temperature sensitivity as viral replication and an ability of establishing persistent infection, are not explained by the Ppi, Vpi and Cpi proteins. The V and C proteins form inclusion bodies in L929 cells infected with rSeV(Ppi) and incubated at 38 degrees C. L929 cells infected with rSeV(Ppi) and L929 cells stably expressing the Cpi protein show resistance to interferon-beta at 32 and 38 degrees C, indicating that the Cpi protein per se is not temperature-sensitive to inhibition of IFN signaling. The complete genome sequences of Sendai virus (SeV) pi and parent Nagoya strains were determined. Fifty nucleic acid substitutions are found in the genome sequence of SeV pi strain in comparison with Nagoya strain. There are three nucleic acid substitutions in the leader sequence, while the trailer, intergenic, gene-end and gene-start sequences of both strains are completely identical. Deletions and insertions of nucleotide are not found. There are 32 amino acid substitutions in Sendai virus pi strain. The specific amino acid substitutions unique to the SeVpi are 18. Information about the complete genome sequences of SeVpi strain is important to totally understand the persistent infection and lower pathogenicity of SeV.
机译:我们通过用pi株替代Z株的P基因来制备嵌合重组仙台病毒[rSeV(Ppi)],以分析Ppi,Vpi和Cpi蛋白的功能。有趣的是,在38摄氏度时rSeV(Ppi)产生的HA明显低于在32摄氏度时的HA产生,表明rSeV(Ppi)的病毒生长在38摄氏度时受到了轻微的抑制。然而,SeVpi的主要表型是明显的温度Ppi,Vpi和Cpi蛋白无法解释病毒复制和建立持续感染能力的敏感性。 V和C蛋白在感染rSeV(Ppi)的L929细胞中形成包涵体并在38摄氏度下温育。感染了rSeV(Ppi)的L929细胞和稳定表达Cpi蛋白的L929细胞在32和38时显示出对干扰素β的抗性℃,表明Cpi蛋白本身对IFN信号传导抑制不敏感。确定了仙台病毒(SeV)pi和亲代名古屋菌株的完整基因组序列。与名古屋株相比,在SeV pi株的基因组序列中发现了五十种核酸取代。前导序列中有三个核酸取代,而两个菌株的尾部,基因间,基因末端和基因起始序列完全相同。没有发现核苷酸的缺失和插入。仙台病毒pi株中有32个氨基酸取代。 SeVpi特有的特定氨基酸取代为18。有关SeVpi菌株完整基因组序列的信息对于完全了解SeVpi的持续感染和较低的致病性很重要。

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