siRNA-Mediated Simultaneous Regulation of the Cellular Innate Immune Response and Human Respiratory Syncytial Virus Replication

被引:6
作者
Martin-Vicente, Maria [1 ]
Resino, Salvador [1 ]
Martinez, Isidoro [1 ]
机构
[1] Inst Salud Carlos III, Unidad Infecc Viral & Inmunidad, Ctr Nacl Microbiol, Madrid 28220, Spain
关键词
respiratory syncytial virus; siRNA; innate immune response; treatment; RNA INTERFERENCE; ANTIGENIC STRUCTURE; INFECTION; INHIBITION; ALN-RSV01; THERAPY; GENE;
D O I
10.3390/biom9050165
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Human respiratory syncytial virus (HRSV) infection is a common cause of severe lower respiratory tract diseases such as bronchiolitis and pneumonia. Both virus replication and the associated inflammatory immune response are believed to be behind these pathologies. So far, no vaccine or effective treatment is available for this viral infection. With the aim of finding new strategies to counteract HRSV replication and modulate the immune response, specific small interfering RNAs (siRNAs) were generated targeting the mRNA coding for the viral fusion (F) protein or nucleoprotein (N), or for two proteins involved in intracellular immune signaling, which are named tripartite motif-containing protein 25 (TRIM25) and retinoic acid-inducible gene-I (RIG-I). Furthermore, two additional bispecific siRNAs were designed that silenced F and TRIM25 (TRIM25/HRSV-F) or N and RIG-I (RIG-I/HRSV-N) simultaneously. All siRNAs targeting N or F, but not those silencing TRIM25 or RIG-I alone, significantly reduced viral titers. However, while siRNAs targeting F inhibited only the expression of the F mRNA and protein, the siRNAs targeting N led to a general inhibition of viral mRNA and protein expression. The N-targeting siRNAs also induced a drastic decrease in the expression of genes of the innate immune response. These results show that both virus replication and the early innate immune response can be regulated by targeting distinct viral products with siRNAs, which may be related to the different role of each protein in the life cycle of the virus.
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页数:16
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  • [1] Taxonomy of the order Mononegavirales: update 2016[J]. Afonso, Claudio L.;Amarasinghe, Gaya K.;Banyai, Krisztian;Bao, Yiming;Basler, Christopher F.;Bavari, Sina;Bejerman, Nicolas;Blasdell, Kim R.;Briand, Francois-Xavier;Briese, Thomas;Bukreyev, Alexander;Calisher, Charles H.;Chandran, Kartik;Cheng, Jiasen;Clawson, Anna N.;Collins, Peter L.;Dietzgen, Ralf G.;Dolnik, Olga;Domier, Leslie L.;Duerrwald, Ralf;Dye, John M.;Easton, Andrew J.;Ebihara, Hideki;Farkas, Szilvia L.;Freitas-Astua, Juliana;Formenty, Pierre;Fouchier, Ron A. M.;Fu, Yanping;Ghedin, Elodie;Goodin, Michael M.;Hewson, Roger;Horie, Masayuki;Hyndman, Timothy H.;Jiang, Daohong;Kitajima, Elliot W.;Kobinger, Gary P.;Kondo, Hideki;Kurath, Gael;Lamb, Robert A.;Lenardon, Sergio;Leroy, Eric M.;Li, Ci-Xiu;Lin, Xian-Dan;Liu, Lijiang;Longdon, Ben;Marton, Szilvia;Maisner, Andrea;Muhlberger, Elke;Netesov, Sergey V.;Nowotny, Norbert. ARCHIVES OF VIROLOGY, 2016(08)
  • [2] siRNA and RNAi optimization[J]. Alagia, Adele;Eritja, Ramon. WILEY INTERDISCIPLINARY REVIEWS-RNA, 2016(03)
  • [3] RNA Interference-Mediated Silencing of the Respiratory Syncytial Virus Nucleocapsid Defines a Potent Antiviral Strategy[J]. Alvarez, Rene;Elbashir, Sayda;Borland, Todd;Toudjarska, Ivanka;Hadwiger, Philipp;John, Mathias;Roehl, Ingo;Morskaya, Svetlana Shulga;Martinello, Rick;Kahn, Jeffrey;Van Ranst, Mark;Tripp, Ralph A.;DeVincenzo, John P.;Pandey, Rajendra;Maier, Martin;Nechev, Lubomir;Manoharan, Muthiah;Kotelianski, Victor;Meyers, Rachel. ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2009(09)
  • [4] Clinical translation of RNAi-based treatments for respiratory diseases[J]. Ballarin-Gonzalez, Borja;Thomsen, Troels Bo;Howard, Kenneth Alan. DRUG DELIVERY AND TRANSLATIONAL RESEARCH, 2013(01)
  • [5] Inhibition of respiratory viruses by nasally administered siRNA[J]. Bitko, V;Musiyenko, A;Shulyayeva, O;Barik, S. NATURE MEDICINE, 2005(01)
  • [6] Phenotypic silencing of cytoplasmic genes using sequence-specific double-stranded short interfering RNA and its application in the reverse genetics of wild type negative-strand RNA viruses[J]. Bitko V.;Barik S. BMC Microbiology, 1600(1)
  • [7] Inhibition of influenza A virus by mixed siRNAs, targeting the PA, NP, and NS genes, delivered by hybrid microcarriers[J]. Brodskaia, Aleksandra, V;Timin, Alexander S.;Gorshkov, Andrey N.;Muslimov, Albert R.;Bondarenko, Andrei B.;Tarakanchikova, Yana, V;Zabrodskaya, Yana A.;Baranovskaya, Irina L.;Il'inskaja, Eugenia, V;Sakhenberg, Elena, I;Sulthorukov, Gleb B.;Vasin, Andrey V. ANTIVIRAL RESEARCH, 2018
  • [8] Design and validation of small interfering RNA on respiratory syncytial virus M2-2 gene: A potential approach in RNA interference on viral replication[J]. Chin, V. K.;Aziz, Nur A. Atika;Hudu, Shuaibu A.;Harmal, Nabil S.;Syahrilnizam, A.;Jalilian, Farid A.;Zamberi, S. JOURNAL OF VIROLOGICAL METHODS, 2016
  • [9] Programmatic access to bioinformatics tools from EMBL-EBI update: 2017[J]. Chojnacki, Szymon;Cowley, Andrew;Lee, Joon;Foix, Anna;Lopez, Rodrigo. NUCLEIC ACIDS RESEARCH, 2017(W1)
  • [10] Viral and host factors in human respiratory syncytial virus pathogenesis[J]. Collins, Peter L.;Graham, Barney S. JOURNAL OF VIROLOGY, 2008(05)