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mRNA二级结构元件对流感病毒基因表达的重要性。

Importance of mRNA secondary structural elements for the expression of influenza virus genes.

作者信息

Ilyinskii Petr O, Schmidt Thorsten, Lukashev Dmitry, Meriin Anatoli B, Thoidis Galini, Frishman Dmitrij, Shneider Alexander M

机构信息

Cure Lab, Inc., Needham, Massachusetts 02492, USA.

出版信息

OMICS. 2009 Oct;13(5):421-30. doi: 10.1089/omi.2009.0036.

Abstract

Development of novel vaccines and therapeutics often requires efficient expression of recombinant viral proteins. Here we show that mutations in essential functional regions of conserved influenza proteins NP and NS1, lead to reduced expression of these genes in vitro. According to in silico analysis, these mRNA regions possess distinct secondary structures sensitive to mutations. We identified a novel structural feature within a region in NS1 mRNA that encodes amino acids essential for NS1 function. Mutations altering this mRNA element lead to significantly reduced protein expression. Conversely, expression was not affected by mutations resulting in amino acid substitutions, when they were designed to preserve this secondary RNA structural element. Furthermore, altering this structure significantly reduced RNA transcription without affecting mRNA stability. Therefore, distinct internal secondary structures of viral mRNA may be important for viral gene expression. If such elements encode amino acids essential for the protein function, then early selection against mutations in this region will be beneficial for the virus. This might point at yet another mechanism of viral evolution, especially for RNA viruses. Finally, introducing mutations into viral genes while preserving their secondary RNA structure, suggests a new method for the generation of efficiently expressed recombinants of viral proteins.

摘要

新型疫苗和治疗方法的开发通常需要高效表达重组病毒蛋白。在此我们表明,保守流感蛋白NP和NS1的必需功能区域中的突变会导致这些基因在体外表达降低。根据计算机分析,这些mRNA区域具有对突变敏感的独特二级结构。我们在NS1 mRNA的一个区域内鉴定出一种新型结构特征,该区域编码NS1功能所必需的氨基酸。改变此mRNA元件的突变会导致蛋白表达显著降低。相反,当设计氨基酸替代突变以保留此二级RNA结构元件时,表达不受影响。此外,改变这种结构会显著降低RNA转录,而不影响mRNA稳定性。因此,病毒mRNA独特的内部二级结构可能对病毒基因表达很重要。如果此类元件编码蛋白功能所必需的氨基酸,那么针对该区域突变的早期选择将对病毒有益。这可能指向病毒进化的另一种机制,尤其是对于RNA病毒。最后,在保留病毒基因二级RNA结构的同时引入突变,提示了一种产生高效表达的病毒蛋白重组体的新方法。

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