Inhibition of flavivirus infections by antisense oligorners specifically suppressing viral translation and RNA replication

被引:138
|
作者
Deas, TS
Binduga-Gajewska, I
Tilgner, M
Ren, P
Stein, DA
Moulton, HM
Iversen, PL
Kauffman, EB
Kramer, LD
Shi, PY
机构
[1] New York State Dept Hlth, Wadsworth Ctr Labs & Res, Albany, NY 12208 USA
[2] SUNY Albany, Dept Biomed Sci, Albany, NY USA
[3] AVI BioPharma Inc, Corvallis, OR USA
关键词
D O I
10.1128/JVI.79.8.4599-4609.2005
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
RNA elements within flavivirus genomes are potential targets for antiviral therapy. A panel of phosphorodiamidate morpholino oligomers (PMOs), whose sequences are complementary to RNA elements located in the 5'- and 3'-termini of the West Nile (WN) virus genome, were designed to anneal to important cis-acting elements and potentially to inhibit WN infection. A novel Arg-rich peptide was conjugated to each PMO for efficient cellular delivery. These PMOs exhibited various degrees of antiviral activity upon incubation with a WN virus luciferase-replicon-containing cell line. Among them, PMOs targeting the 5'-terminal 20 nucleotides (5'End) or targeting the 3'-terminal element involved in a potential genome cyclizing interaction (3'CSI) exhibited the greatest potency. When cells infected with an epidemic strain of WN virus were treated with the 5'End or 3'CSI PMO, virus titers were reduced by approximately 5 to 6 logs at a 5 mu M concentration without apparent cytotoxicity. The 3'CSI PMO also inhibited mosquito-borne flaviviruses other than WN virus, and the antiviral potency correlated with the conservation of the targeted 3'CSI sequences of specific viruses. Mode-of-action analyses showed that the 5'End and 3'CSI PMOs suppressed viral infection through two distinct mechanisms. The 5'End PMO inhibited viral translation, whereas the 3'CSI PMO did not significantly affect viral translation but suppressed RNA replication. The results suggest that antisense PMO-mediated blocking of cis-acting elements of flavivirus genomes can potentially be developed into an anti-flavivirus therapy. In addition, we report that although a full-length WN virus containing a luciferase reporter (engineered at the 3' untranslated region of the genome) is not stable, an early passage of this reporting virus can be used to screen for inhibitors against any step of the virus life cycle.
引用
收藏
页码:4599 / 4609
页数:11
相关论文
共 50 条
  • [41] Interferon inhibits hepatitis C virus replication by blocking viral RNA translation.
    Qi, ZT
    DeLucca, C
    Prabhu, R
    Akhter, S
    Garry, R
    Joshi, V
    Regenstein, FG
    Dash, S
    HEPATOLOGY, 2002, 36 (04) : 383A - 383A
  • [42] Translation Inhibition Mediated by Interferon-Stimulated Genes during Viral Infections
    Smart, Alexandria
    Gilmer, Orian
    Caliskan, Neva
    VIRUSES-BASEL, 2024, 16 (07):
  • [43] Inhibition of hepatitis C virus RNA translation with antisense RNA expressing adenoviruses in HepG2-cells
    Gonzalez-Carmona, MA
    Heinicke, T
    Hoffman, P
    Quasdorff, M
    Sauerbruch, T
    Caselmann, WH
    JOURNAL OF HEPATOLOGY, 2003, 38 : 111 - 111
  • [44] Viperin triggers ribosome collision-dependent translation inhibition to restrict viral replication
    Hsu, Jack Chun-Chieh
    Laurent-Rolle, Maudry
    Pawlak, Joanna B.
    Xia, Hongjie
    Kunte, Amit
    Hee, Jia Shee
    Lim, Jaechul
    Harris, Lawrence D.
    Wood, James M.
    Evans, Gary B.
    Shi, Pei-Yong
    Grove, Tyler L.
    Almo, Steven C.
    Cresswell, Peter
    MOLECULAR CELL, 2022, 82 (09) : 1631 - +
  • [45] INHIBITION OF ROUS-SARCOMA VIRAL-RNA TRANSLATION BY A SPECIFIC OLIGODEOXYRIBONUCLEOTIDE
    STEPHENSON, ML
    ZAMECNIK, PC
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1978, 75 (01) : 285 - 288
  • [46] RNA G-Quadruplex Invasion and Translation Inhibition by Antisense γ-Peptide Nucleic Acid Oligomers
    Oyaghire, Stanley N.
    Cherubim, Collin J.
    Telmer, Cheryl A.
    Martinez, Joe A.
    Bruchez, Marcel P.
    Armitage, Bruce A.
    BIOCHEMISTRY, 2016, 55 (13) : 1977 - 1988
  • [47] Selection and identification of an RNA aptamer that specifically binds the HIV-1 capsid lattice and inhibits viral replication
    Gruenke, Paige R.
    Aneja, Rachna
    Welbourn, Sarah
    Ukah, Obiaara B.
    Sarafianos, Stefan G.
    Burke, Donald H.
    Lange, Margaret J.
    NUCLEIC ACIDS RESEARCH, 2022, 50 (03) : 1701 - 1717
  • [48] A Poxvirus Decapping Enzyme Colocalizes with Mitochondria To Regulate RNA Metabolism and Translation and Promote Viral Replication
    Cao, Shuai
    Molina, Joshua A.
    Cantu, Fernando
    Hernandez, Candy
    Yang, Zhilong
    MBIO, 2022, 13 (03):
  • [49] Complex signals in the genomic 3′ nontranslated region of bovine viral diarrhea virus coordinate translation and replication of the viral RNA
    Isken, O
    Grassmann, CW
    Yu, HY
    Behrens, SE
    RNA, 2004, 10 (10) : 1637 - 1652
  • [50] Hsp90 Interacts Specifically with Viral RNA and Differentially Regulates Replication Initiation of Bamboo mosaic virus and Associated Satellite RNA
    Huang, Ying Wen
    Hu, Chung Chi
    Liou, Ming Ru
    Chang, Ban Yang
    Tsai, Ching Hsiu
    Meng, Menghsiao
    Lin, Na Sheng
    Hsu, Yau Heiu
    PLOS PATHOGENS, 2012, 8 (05)