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RNA structural constraints in the evolution of the influenza A virus genome NP segment.


ABSTRACT: Conserved RNA secondary structures were predicted in the nucleoprotein (NP) segment of the influenza A virus genome using comparative sequence and structure analysis. A number of structural elements exhibiting nucleotide covariations were identified over the whole segment length, including protein-coding regions. Calculations of mutual information values at the paired nucleotide positions demonstrate that these structures impose considerable constraints on the virus genome evolution. Functional importance of a pseudoknot structure, predicted in the NP packaging signal region, was confirmed by plaque assays of the mutant viruses with disrupted structure and those with restored folding using compensatory substitutions. Possible functions of the conserved RNA folding patterns in the influenza A virus genome are discussed.

SUBMITTER: Gultyaev AP 

PROVIDER: S-EPMC4179967 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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RNA structural constraints in the evolution of the influenza A virus genome NP segment.

Gultyaev Alexander P AP   Tsyganov-Bodounov Anton A   Spronken Monique I J MI   van der Kooij Sander S   Fouchier Ron A M RA   Olsthoorn René C L RC  

RNA biology 20140723 7


Conserved RNA secondary structures were predicted in the nucleoprotein (NP) segment of the influenza A virus genome using comparative sequence and structure analysis. A number of structural elements exhibiting nucleotide covariations were identified over the whole segment length, including protein-coding regions. Calculations of mutual information values at the paired nucleotide positions demonstrate that these structures impose considerable constraints on the virus genome evolution. Functional  ...[more]

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