Novel conserved RNA structural motifs regulate genome cyclization of yellow fever virus
Listed in
This article is not in any list yet, why not save it to one of your lists.Abstract
The long-range RNA-RNA interaction between the termini of a flavivirus genome is controlled by multiple local RNA secondary and tertiary structures. However, a complete picture of this essential genome cyclization process is still elusive. Herein, by using selective 2′-hydroxyl acylation analyzed by primer extension (SHAPE), SHAPE and mutational profiling, in vitro RNA binding assays, and reverse genetics approaches, we demonstrated that the hairpin 2 in the capsid-coding region (cHP2) is required for efficient replication of yellow fever virus and functionally interacts with the 3′-small hairpin (sHP) during genome cyclization. Interestingly, through a combination of multidimensional chemical probing and functional characterization assays, it was discovered that the sHP forms previously unknown tertiary interactions with an immediately upstream GACG region embedded within the 3′-cyclization sequence. This crucial tertiary RNA motif accounts for a potential negative regulatory mechanism of genome cyclization and is universally conserved among the mosquito-borne-related flaviviruses, which constitute a major phylogenetic branch within the subgenus Euflavivirus, genus Orthoflavivirus . Our study highlights the intricacy of RNA-based regulation in flaviviruses.