2018/12/07 by Ryan H. Gumpper, Weike Li, Ming Luo
Agricultural and Biological Sciences · Medicine · #Animal Virus Infections Studies #Plant Virus Research Studies #Viral Infections and Vectors
paper · pdf · doi:10.1128/jvi.01775-18
Negative-strand RNA viruses (NSVs) include the most pathogenic viruses known. New methods to monitor their evolutionary trends are urgently needed for the development of antivirals and vaccines. The protein translation machinery of the host cell is currently recognized as a main genomic regulator of RNA virus evolution, which works especially well for positive-strand RNA viruses. However, this approach fails for NSVs because it does not consider the unique mechanism of their viral RNA synthesis. For NSVs, the viral RNA-dependent RNA polymerase (vRdRp) must gain access to the genome sequestered in the nucleocapsid. Our work suggests a paradigm shift that the interactions between the RNA genome and the nucleocapsid protein regulate the activity of vRdRp, which selects codon usage.