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A New Approach to 3D Modeling of Inhomogeneous Populations of Viral Regulatory RNA

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  • Additional Information
    • Publication Information:
      MDPI, 2020.
    • Publication Date:
      2020
    • Abstract:
      Tertiary structure (3D) is the physical context of RNA regulatory activity. Retroviruses are RNA viruses that replicate through the proviral DNA intermediate transcribed by hosts. Proviral transcripts form inhomogeneous populations due to variable structural ensembles of overlapping regulatory RNA motifs in the 5&prime
      untranslated region (UTR), which drive RNAs to be spliced or translated, and/or dimerized and packaged into virions. Genetic studies and structural techniques have provided fundamental input constraints to begin predicting HIV 3D conformations in silico. Using SimRNA and sets of experimentally-determined input constraints of HIVNL4-3 trans-activation responsive sequence (TAR) and pairings of unique-5&prime
      (U5) with dimerization (DIS) or AUG motifs, we calculated a series of 3D models that differ in proximity of 5&prime
      Cap and the junction of TAR and PolyA helices
      configuration of primer binding site (PBS)-segment
      and two host cofactors binding sites. Input constraints on U5-AUG pairings were most compatible with intramolecular folding of 5&prime
      UTR motifs in energetic minima. Introducing theoretical constraints predicted metastable PolyA region drives orientation of 5&prime
      Cap with TAR, U5 and PBS-segment helices. SimRNA and the workflow developed herein provides viable options to predict 3D conformations of inhomogeneous populations of large RNAs that have been intractable to conventional ensemble methods.
    • File Description:
      application/pdf
    • ISSN:
      1999-4915
    • Rights:
      OPEN
    • Accession Number:
      edsair.doi.dedup.....318a14a932b5b2e4085d2b22a1883398