Breaking pseudo-twofold symmetry in the poliovirus 3'-UTR Y-stem by restoring Watson-Crick base pairs

Jan Zoll, Marco Tessari, Frank J M Van Kuppeveld, Willem J G Melchers, Hans A Heus

    Research output: Contribution to journalArticleAcademicpeer-review

    Abstract

    The previously described NMR structure of a 5'-CU-3'/5'-UU-3' motif, which is highly conserved within the 3'-UTR Y-stem of poliovirus-like enteroviruses, revealed striking regularities of the local helix geometry, thus retaining the pseudo-twofold symmetry of the RNA helix. A mutant virus with both pyrimidine base pairs changed into Watson-Crick replicated as wild type, indicating the functional importance of this symmetry relation in viral RNA replication. Here we investigated the effect of changing only one of the two pyrimidine base pairs to Watson-Crick. We determined the NMR structures of two Y-stem variants: one containing the 5'-CU-3'/5'-AU-3' motif, which has been found in wild-type virus isolates as well, and the other containing a 5'-CU-3'/5'-UG-3' motif, which is not present in any enterovirus sequenced to date. Both structures show single pyrimidine mismatches with intercalated bases. In the 5'-CU-3'/5'-AU-3' motif a C-U Watson-Crick-type base pair is formed that retains the pseudo-twofold symmetry, while in the 5'-CU-3'/5'-UG-3' motif a single asymmetric U-U mismatch breaks the twofold symmetry. Surprisingly, for the nonnatural variant no effect of the single base-pair replacement was observed on polioviral RNA replication using an in vitro replicon assay.

    Original languageEnglish
    Pages (from-to)781-92
    Number of pages12
    JournalRNA
    Volume13
    Issue number5
    DOIs
    Publication statusPublished - 2007

    Keywords

    • 3' Untranslated Regions
    • Base Pairing
    • Magnetic Resonance Spectroscopy
    • Models, Molecular
    • Mutation
    • Nucleic Acid Conformation
    • Poliovirus
    • RNA, Viral
    • Virus Replication

    Fingerprint

    Dive into the research topics of 'Breaking pseudo-twofold symmetry in the poliovirus 3'-UTR Y-stem by restoring Watson-Crick base pairs'. Together they form a unique fingerprint.

    Cite this