Structural and Functional Motifs in Influenza Virus RNAs
暂无分享,去创建一个
Roland Marquet | Redmond P. Smyth | R. Smyth | R. Marquet | J. Paillart | Maud Contrant | Damien Ferhadian | Maud Contrant | Anne Printz-Schweigert | Jean-Christophe Paillart | Damien Ferhadian | Anne Printz-Schweigert | M. Contrant
[1] C. Isel,et al. Interaction network linking the human H3N2 influenza A virus genomic RNA segments. , 2012, Vaccine.
[2] S. Kutluay,et al. Nucleotide resolution mapping of influenza A virus nucleoprotein-RNA interactions reveals RNA features required for replication , 2018, Nature Communications.
[3] A. Gultyaev,et al. Subtype-specific structural constraints in the evolution of influenza A virus hemagglutinin genes , 2016, Scientific Reports.
[4] A. Gultyaev,et al. RNA structural constraints in the evolution of the influenza A virus genome NP segment , 2014, RNA biology.
[5] Jonathan L Chen,et al. Biophysical Analysis of Influenza A Virus RNA Promoter at Physiological Temperatures* , 2011, The Journal of Biological Chemistry.
[6] D. Stuart,et al. Crystal structure of the RNA-dependent RNA polymerase from influenza C virus , 2015, Nature.
[7] Walter N. Moss,et al. Influenza A Virus Coding Regions Exhibit Host-Specific Global Ordered RNA Structure , 2012, PloS one.
[8] D. Turner,et al. Identification of conserved RNA secondary structures at influenza B and C splice sites reveals similarities and differences between influenza A, B, and C , 2014, BMC Research Notes.
[9] V. Cooper,et al. Genome-wide analysis of influenza viral RNA and nucleoprotein association , 2017, Nucleic acids research.
[10] Alexander P. Gultyaev,et al. An RNA conformational shift in recent H5N1 influenza A viruses , 2007, Bioinform..
[11] Ron A M Fouchier,et al. Influenza Virus RNA Structure: Unique and Common Features , 2010, International reviews of immunology.
[12] Nicole C. Robb,et al. RIG-I Detects Viral Genomic RNA during Negative-Strand RNA Virus Infection , 2010, Cell.
[13] Steven F. Baker,et al. Mutations Designed by Ensemble Defect to Misfold Conserved RNA Structures of Influenza A Segments 7 and 8 Affect Splicing and Attenuate Viral Replication in Cell Culture , 2016, PloS one.
[14] T. Deng,et al. Mutational Analysis of the Influenza Virus cRNA Promoter and Identification of Nucleotides Critical for Replication , 2004, Journal of Virology.
[15] T. Takimoto,et al. Selective incorporation of vRNP into influenza A virions determined by its specific interaction with M1 protein. , 2017, Virology.
[16] D. Turner,et al. The Influenza A PB1-F2 and N40 Start Codons Are Contained within an RNA Pseudoknot. , 2015, Biochemistry.
[17] Walter N. Moss,et al. Secondary structure model of the naked segment 7 influenza A virus genomic RNA. , 2016, The Biochemical journal.
[18] M. B. Leahy,et al. Hairpin Loop Structure in the 3′ Arm of the Influenza A Virus Virion RNA Promoter Is Required for Endonuclease Activity , 2001, Journal of Virology.
[19] Walter N. Moss,et al. Secondary Structure of a Conserved Domain in an Intron of Influenza A M1 mRNA , 2014, Biochemistry.
[20] G. Neumann,et al. At the centre: influenza A virus ribonucleoproteins , 2014, Nature Reviews Microbiology.
[21] G. Hobom,et al. The packaging signal of influenza viral RNA molecules. , 2001, RNA.
[22] G. Varani,et al. A novel small-molecule binds to the influenza A virus RNA promoter and inhibits viral replication. , 2014, Chemical communications.
[23] Janghyun Lee,et al. Structural features of influenza A virus panhandle RNA enabling the activation of RIG-I independently of 5′-triphosphate , 2016, Nucleic acids research.
[24] R. Kierzek,et al. A Conserved Secondary Structural Element in the Coding Region of the Influenza A Virus Nucleoprotein (NP) mRNA Is Important for the Regulation of Viral Proliferation , 2015, PloS one.
[25] G. Neumann,et al. Promoter elements in the influenza vRNA terminal structure. , 1996, RNA.
[26] J. Parvin,et al. Genomic RNAs of influenza viruses are held in a circular conformation in virions and in infected cells by a terminal panhandle. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[27] E. Fodor,et al. Characterization of the RNA-fork model of virion RNA in the initiation of transcription in influenza A virus , 1995, Journal of virology.
[28] G. Varani,et al. Targeting Influenza A Virus RNA Promoter , 2015, Chemical biology & drug design.
[29] T. Deng,et al. Dual Roles of the Hemagglutinin Segment-Specific Noncoding Nucleotides in the Extended Duplex Region of the Influenza A Virus RNA Promoter , 2016, Journal of Virology.
[30] S. Bae,et al. A single-nucleotide natural variation (U4 to C4) in an influenza A virus promoter exhibits a large structural change: implications for differential viral RNA synthesis by RNA-dependent RNA polymerase. , 2003, Nucleic acids research.
[31] A. Ishihama,et al. Identification of the RNA polymerase-binding site on genome RNA of influenza virus. , 1987, Journal of biochemistry.
[32] C. Isel,et al. A functional sequence-specific interaction between influenza A virus genomic RNA segments , 2013, Proceedings of the National Academy of Sciences.
[33] M. B. Leahy,et al. Mutagenic Analysis of the 5′ Arm of the Influenza A Virus Virion RNA Promoter Defines the Sequence Requirements for Endonuclease Activity , 2001, Journal of Virology.
[34] Dmitrij Frishman,et al. Importance of mRNA secondary structural elements for the expression of influenza virus genes. , 2009, Omics : a journal of integrative biology.
[35] C. Isel,et al. A supramolecular assembly formed by influenza A virus genomic RNA segments , 2011, Nucleic acids research.
[36] Walter N. Moss,et al. Influenza B virus has global ordered RNA structure in (+) and (−) strands but relatively less stable predicted RNA folding free energy than allowed by the encoded protein sequence , 2013, BMC Research Notes.
[37] P. Palese,et al. The polyadenylation signal of influenza virus RNA involves a stretch of uridines followed by the RNA duplex of the panhandle structure , 1991, Journal of virology.
[38] B. Seong,et al. The position 4 nucleotide at the 3' end of the influenza virus neuraminidase vRNA is involved in temporal regulation of transcription and replication of neuraminidase RNAs and affects the repertoire of influenza virus surface antigens. , 1998, The Journal of general virology.
[39] S. Cusack,et al. Structural insights into RNA synthesis by the influenza virus transcription-replication machine. , 2017, Virus research.
[40] Walter N. Moss,et al. Secondary Structure of a Conserved Domain in the Intron of Influenza A NS1 mRNA , 2013, PloS one.
[41] Walter N. Moss,et al. The 3′ Splice Site of Influenza A Segment 7 mRNA Can Exist in Two Conformations: A Pseudoknot and a Hairpin , 2012, PloS one.
[42] C. Isel,et al. An in vitro network of intermolecular interactions between viral RNA segments of an avian H5N2 influenza A virus: comparison with a human H3N2 virus , 2012, Nucleic acids research.
[43] The influenza A virus NS genome segment displays lineage-specific patterns in predicted RNA secondary structure , 2016, BMC Research Notes.
[44] Jonathan L Chen,et al. Structural Features of a 3′ Splice Site in Influenza A , 2015, Biochemistry.
[45] Yan Zhou,et al. Influenza A Virus Panhandle Structure Is Directly Involved in RIG-I Activation and Interferon Induction , 2015, Journal of Virology.
[46] P. Palese,et al. The 3' and 5'-terminal sequences of influenza A, B and C virus RNA segments are highly conserved and show partial inverted complementarity. , 1980, Gene.
[47] S. Cusack,et al. Structure of influenza virus RNP. I. Influenza virus nucleoprotein melts secondary structure in panhandle RNA and exposes the bases to the solvent. , 1994, The EMBO journal.
[48] Walter N. Moss,et al. The influenza A segment 7 mRNA 3′ splice site pseudoknot/hairpin family , 2012, RNA biology.
[49] D. Marc,et al. The RNA-binding domain of influenzavirus non-structural protein-1 cooperatively binds to virus-specific RNA sequences in a structure-dependent manner , 2012, Nucleic acids research.
[50] S. Cusack,et al. Structure of influenza A polymerase bound to the viral RNA promoter , 2014, Nature.
[51] Walter N. Moss,et al. Self-Folding of Naked Segment 8 Genomic RNA of Influenza A Virus , 2016, PloS one.
[52] G. Varani,et al. Solution structure of the influenza A virus cRNA promoter: implications for differential recognition of viral promoter structures by RNA-dependent RNA polymerase. , 2003, Nucleic acids research.
[53] Stefan Reich,et al. Structural insight into cap-snatching and RNA synthesis by influenza polymerase , 2014, Nature.
[54] C. Isel,et al. Selective packaging of the influenza A genome and consequences for genetic reassortment. , 2014, Trends in microbiology.
[55] Walter N. Moss,et al. Identification of potential conserved RNA secondary structure throughout influenza A coding regions. , 2011, RNA.
[56] O. Pybus,et al. Computational and molecular analysis of conserved influenza A virus RNA secondary structures involved in infectious virion production , 2016, RNA biology.
[57] E. Fodor,et al. The influenza virus panhandle is involved in the initiation of transcription , 1994, Journal of virology.
[58] D. Garcin,et al. Mismatches in the Influenza A Virus RNA Panhandle Prevent Retinoic Acid-Inducible Gene I (RIG-I) Sensing by Impairing RNA/RIG-I Complex Formation , 2015, Journal of Virology.