4.5 Article

Translational Regulation by the 3′ Untranslated Region of the Dengue Type 2 Virus Genome

Journal

AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE
Volume 81, Issue 5, Pages 817-824

Publisher

AMER SOC TROP MED & HYGIENE
DOI: 10.4269/ajtmh.2009.08-0595

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Funding

  1. National Natural Science Foundation of China [30600530, 30770107]

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The role of the 3'untranslated region (UTR) of the dengue virus (DEN V) genome during viral translation remains to be elucidated. We assessed the contribution of well-defined RNA elements in the 3'UTR of DENV-2 to viral translation using a virus-induced reporting gene system and deoxyribozymes (DRzs) targeting the 3'UTR of the DENV-2 genome. Results show that mRNAs carrying a deletion of repeated conserved sequence (RCS2)-CS2 are translated less efficiently than wild type mRNAs. However, mRNAs with a deletion of CS1-stem loop (SL) are translated more efficiently. Thus, CS1-SL and RCS2-CS2 may have different effects on translational regulation. Additionally, the translation-suppressing effect of CS1-SL or the SL element is further confirmed in DENV-2-infected cells using DRzs. Mutagenesis studies show that, rather than the secondary structure, nucleotides 1.0663-10677 and 10709-10723 are responsible for translational suppression of SL. Overall, our results demonstrate that sequences and elements within the DENV-2 3'UTR regulate viral translation.

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