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首页> 外文期刊>Archives of virology >Effect of foot-and-mouth disease virus capsid precursor protein and 3C protease expression on bovine herpesvirus 1 replication.
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Effect of foot-and-mouth disease virus capsid precursor protein and 3C protease expression on bovine herpesvirus 1 replication.

机译:口蹄疫病毒衣壳前体蛋白和3C蛋白酶表达对牛疱疹病毒1复制的影响。

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摘要

Several reports have previously shown that expression of the foot-and-mouth disease virus (FMDV) capsid precursor protein encoding region P1-2A together with the 3C protease (P1-2A/3C) results in correct processing of the capsid precursor into VP0, VP1 and VP3 and formation of FMDV capsid structures that are able to induce a protective immune response against FMDV challenge after immunization using naked DNA constructs or recombinant viruses. To elucidate whether bovine herpesvirus 1 (BHV-1) might also be suitable as a viral vector for empty capsid generation, we aimed to integrate a P1-2A/3C expression cassette into the BHV-1 genome, which, however, failed repeatedly. In contrast, BHV-1 recombinants that expressed an inactive 3C protease or the P1-2A polyprotein alone could be easily generated, although the recombinant that expressed P1-2A exhibited a defect in direct cell-cell spread and release of infectious particles. These results suggested that expression of the original, active FMDV 3C protease is not compatible with BHV-1 replication. This conclusion is supported by the isolation of recombinant BHV-1/3C*, which contained mutations within the 3C ORF (3C* ORF)--probably introduced spontaneously during generation of BHV-1/3C*--instead of the authentic 3C ORF contained in the transfer plasmids. Within the 3C* ORF, the codons for glycine 38 and phenylalanine 48 were both substituted by codons for serine. The resulting 3C* protease exhibits a highly reduced activity for proteolytic processing of the P1-2A polyprotein and thus might be a good candidate for the generation of live attenuated FMDV variants.
机译:先前有几篇报道表明,口蹄疫病毒(FMDV)衣壳前体蛋白编码区P1-2A与3C蛋白酶(P1-2A / 3C)一起表达可将衣壳前体正确加工为VP0, VP1和VP3以及FMDV衣壳结构的形成,在使用裸露的DNA构建体或重组病毒免疫后,它们能够诱导针对FMDV攻击的保护性免疫应答。为了阐明牛疱疹病毒1(BHV-1)是否也适合作为空衣壳生成的病毒载体,我们旨在将P1-2A / 3C表达盒整合到BHV-1基因组中,但是该基因组反复失败。相反,尽管表达P1-2A的重组体在直接的细胞间传播和感染性颗粒的释放方面表现出缺陷,但仅表达无活性的3C蛋白酶或P1-2A多蛋白的BHV-1重组体就很容易产生。这些结果表明,原始的,活性的FMDV 3C蛋白酶的表达与BHV-1复制不兼容。该结论得到了重组BHV-1 / 3C *的分离的支持,该重组BHV-1 / 3C *包含3C ORF(3C * ORF)内的突变-可能是在BHV-1 / 3C *产生时自发引入的,而不是真实的3C ORF包含在转移质粒中。在3C * ORF中,甘氨酸38和苯丙氨酸48的密码子均被丝氨酸的密码子取代。所得的3C *蛋白酶对P1-2A多蛋白的蛋白水解加工显示出高度降低的活性,因此可能是产生活的减毒FMDV变体的良好候选者。

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