首页> 外文期刊>Nucleic Acids Research >The novel influenza A virus protein PA-X and its naturally deleted variant show different enzymatic properties in comparison to the viral endonuclease PA
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The novel influenza A virus protein PA-X and its naturally deleted variant show different enzymatic properties in comparison to the viral endonuclease PA

机译:与病毒核酸内切酶PA相比,新型A型流感病毒蛋白PA-X及其天然缺失的变体显示出不同的酶学性质

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摘要

The PA protein of Influenza A virus (IAV) encoded by segment 3 acts as a specialized RNA endonuclease in the transcription of the viral genome. The same genomic segment encodes for a second shorter protein, termed PA-X, with the first 191 N-terminal aminoacids (aa) identical to PA, but with a completely different C-ter domain of 61 aa, due to a ribosomal frameshifting. In addition, it has been shown that several IAV isolates encode for a naturally truncated PA-X variant, PAX Delta C20, missing the last 20 aa. The biochemical properties of PA-X and PAX Delta C20 have been poorly investigated so far. Here, we have carried out an enzymatic characterization of PA-X and its naturally deleted form, in comparison with PA from the human IAV strain A/WSN/33 (H1N1). Our results showed, to the best of our knowledge for the first time, that PA-X possesses an endonucleolytic activity. Both PA and PA-X preferentially cut single stranded RNA regions, but with some differences. In addition, we showed that PAX Delta C20 has severely reduced nuclease activity. These results point to a previously undetected role of the last C-ter 20 aa for the catalytic activity of PA-X and support distinct roles for these proteins in the viral life cycle.
机译:由片段3编码的甲型流感病毒(IAV)的PA蛋白在病毒基因组的转录过程中起着特殊的RNA内切酶的作用。相同的基因组片段编码第二个较短的蛋白,称为PA-X,其前191个N末端氨基酸(aa)与PA相同,但由于核糖体移码,其C-ter域完全不同,为61aa。另外,已经显示,几种IAV分离株编码自然截短的PA-X变体PAX Delta C20,但缺少最后20个氨基酸。迄今为止,对PA-X和PAX Delta C20的生化特性的研究很少。在这里,我们与人IAV株A / WSN / 33(H1N1)的PA进行了PA-X及其天然缺失形式的酶促表征。我们的结果首次证明,PA-X具有内切核酸酶活性。 PA和PA-X都优先切割单链RNA区域,但有一些区别。此外,我们显示PAX Delta C20具有严重降低的核酸酶活性。这些结果表明,最后一个C-ter 20aa对于PA-X的催化活性以前没有发现过的作用,并支持这些蛋白在病毒生命周期中的独特作用。

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