Pandemic Influenza A Viruses Escape from Restriction by Human MxA through Adaptive Mutations in the Nucleoprotein
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RA Fouchier, 2004, Avian influenza A virus (H7N7) associated with human conjunctivitis and a fatal case of acute respiratory distress syndrome, Proc Natl Acad Sci U S A, 101, 1356, 10.1073/pnas.0308352100
SA Tweed, 2004, Human illness from avian influenza H7N3, British Columbia, Emerg Infect Dis, 10, 2196, 10.3201/eid1012.040961
YP Lin, 2000, Avian-to-human transmission of H9N2 subtype influenza A viruses: relationship between H9N2 and H5N1 human isolates, Proc Natl Acad Sci U S A, 97, 9654, 10.1073/pnas.160270697
JS Malik Peiris, 2009, Avian influenza viruses in humans, Rev Sci Tech, 28, 161, 10.20506/rst.28.1.1871
TT Wang, 2012, Seroevidence for H5N1 Influenza Infections in Humans: Meta-Analysis, Science, 335, 1463, 10.1126/science.1218888
N Naffakh, 2008, Host restriction of avian influenza viruses at the level of the ribonucleoproteins, Annu Rev Microbiol, 62, 403, 10.1146/annurev.micro.62.081307.162746
M Imai, 2012, Experimental adaptation of an influenza H5 HA confers respiratory droplet transmission to a reassortant H5 HA/H1N1 virus in ferrets, Nature, 486, 420, 10.1038/nature10831
S Herfst, 2012, Airborne transmission of influenza A/H5N1 virus between ferrets, Science, 336, 1534, 10.1126/science.1213362
JK Taubenberger, 2011, Insights on influenza pathogenesis from the grave, Virus Res, 162, 2, 10.1016/j.virusres.2011.09.003
G Neumann, 2009, Emergence and pandemic potential of swine-origin H1N1 influenza virus, Nature, 459, 931, 10.1038/nature08157
HL Yen, 2009, Pandemic influenza as a current threat, Curr Top Microbiol Immunol, 333, 3
M Imai, 2012, The role of receptor binding specificity in interspecies transmission of influenza viruses, Curr Opin Virol, 2, 160, 10.1016/j.coviro.2012.03.003
EC Hutchinson, 2012, Nuclear import of the influenza A virus transcriptional machinery, Vaccine, 51, 7353, 10.1016/j.vaccine.2012.04.085
O Haller, 2010, Dynamin-like MxA GTPase: structural insights into oligomerization and implications for antiviral activity, J Biol Chem, 285, 28419, 10.1074/jbc.R110.145839
O Haller, 2011, Human MxA protein: an interferon-induced dynamin-like GTPase with broad antiviral activity, J Interferon Cytokine Res, 31, 79, 10.1089/jir.2010.0076
S Gao, 2010, Structural basis of oligomerization in the stalk region of dynamin-like MxA, Nature, 465, 502, 10.1038/nature08972
S Gao, 2011, Structure of myxovirus resistance protein a reveals intra- and intermolecular domain interactions required for the antiviral function, Immunity, 35, 514, 10.1016/j.immuni.2011.07.012
O Daumke, 2010, Structure of the MxA stalk elucidates the assembly of ring-like units of an antiviral module, Small GTPases, 1, 62, 10.4161/sgtp.1.1.12989
J Dittmann, 2008, Influenza A virus strains differ in sensitivity to the antiviral action of Mx-GTPase, J Virol, 82, 3624, 10.1128/JVI.01753-07
P Zimmermann, 2011, The viral nucleoprotein determines Mx sensitivity of influenza A viruses, J Virol, 85, 8133, 10.1128/JVI.00712-11
F Pitossi, 1993, A functional GTP-binding motif is necessary for antiviral activity of Mx proteins, J Virol, 67, 6726, 10.1128/JVI.67.11.6726-6732.1993
TM Tumpey, 2007, A two-amino acid change in the hemagglutinin of the 1918 influenza virus abolishes transmission, Science, 315, 655, 10.1126/science.1136212
Y Bao, 2008, The influenza virus resource at the National Center for Biotechnology Information, J Virol, 82, 596, 10.1128/JVI.02005-07
Q Ye, 2006, The mechanism by which influenza A virus nucleoprotein forms oligomers and binds RNA, Nature, 444, 1078, 10.1038/nature05379
AK Ng, 2008, Structure of the influenza virus A H5N1 nucleoprotein: implications for RNA binding, oligomerization, and vaccine design, FASEB J, 22, 3638, 10.1096/fj.08-112110
GJ Smith, 2009, Origins and evolutionary genomics of the 2009 swine-origin H1N1 influenza A epidemic, Nature, 459, 1122, 10.1038/nature08182
J Verhelst, 2012, Interferon-inducible protein mx1 inhibits influenza virus by interfering with functional viral ribonucleoprotein complex assembly, J Virol, 86, 13445, 10.1128/JVI.01682-12
C Wisskirchen, 2011, The cellular RNA helicase UAP56 is required for prevention of double-stranded RNA formation during influenza A virus infection, J Virol, 85, 8646, 10.1128/JVI.02559-10
A Kawaguchi, 2011, Replication-coupled and host factor-mediated encapsidation of the influenza virus genome by viral nucleoprotein, J Virol, 85, 6197, 10.1128/JVI.00277-11
E Nakajima, 2007, A naturally occurring variant of porcine Mx1 associated with increased susceptibility to influenza virus in vitro, Biochem Genet, 45, 11, 10.1007/s10528-006-9045-y
A Asano, 2002, Polymorphisms and the antiviral property of porcine Mx1 protein, J Vet Med Sci, 64, 1085, 10.1292/jvms.64.1085
T Morozumi, 2009, Molecular cloning and characterization of porcine Mx2 gene, Mol Immunol, 46, 858, 10.1016/j.molimm.2008.09.019
O Moncorge, 2012, Investigation of influenza polymerase activity in pig cells, J Virol
MI Nelson, 2012, Global transmission of influenza viruses from humans to swine, J Gen Virol, 93, 2195, 10.1099/vir.0.044974-0
C Seitz, 2010, High yields of influenza A virus in Madin-Darby canine kidney cells are promoted by an insufficient interferon-induced antiviral state, J Gen Virol, 91, 1754, 10.1099/vir.0.020370-0
Y Wang, 2012, Associations of chicken Mx1 polymorphism with antiviral responses in avian influenza virus infected embryos and broilers, Poult Sci, 91, 3019, 10.3382/ps.2012-02471
B Schusser, 2011, Mx is dispensable for interferon-mediated resistance of chicken cells against influenza A virus, J Virol, 85, 8307, 10.1128/JVI.00535-11
CT Benfield, 2008, Asparagine 631 variants of the chicken Mx protein do not inhibit influenza virus replication in primary chicken embryo fibroblasts or in vitro surrogate assays, J Virol, 82, 7533, 10.1128/JVI.00185-08
B Mänz, 2010, A polymorphism in the hemagglutinin of the human isolate of a highly pathogenic H5N1 influenza virus determines organ tropism in mice, J Virol, 84, 8316, 10.1128/JVI.00850-10
A Altmuller, 1992, Genetic relatedness of the nucleoprotein (NP) of recent swine, turkey, and human influenza A virus (H1N1) isolates, Virus Res, 22, 79, 10.1016/0168-1702(92)90091-M
DB Finkelstein, 2007, Persistent host markers in pandemic and H5N1 influenza viruses, J Virol, 81, 10292, 10.1128/JVI.00921-07
JH Kim, 2010, Role of host-specific amino acids in the pathogenicity of avian H5N1 influenza viruses in mice, J Gen Virol, 91, 1284, 10.1099/vir.0.018143-0
NA Ilyushina, 2010, Adaptation of pandemic H1N1 influenza viruses in mice, J Virol, 84, 8607, 10.1128/JVI.00159-10
SR Matzinger, 2013, Myxovirus resistance gene A (MxA) expression suppresses Influenza A virus replication in Interferon-alpha stimulated primate cells, J Virol, 2, 1150, 10.1128/JVI.02271-12
J Pavlovic, 1992, Human and mouse Mx proteins inhibit different steps of the influenza virus multiplication cycle, J Virol, 66, 2564, 10.1128/JVI.66.4.2564-2569.1992
T Huang, 1992, Overexpression of the influenza virus polymerase can titrate out inhibition by the murine Mx1 protein, J Virol, 66, 4154, 10.1128/JVI.66.7.4154-4160.1992
AM Stranden, 1993, Function of the mouse Mx1 protein is inhibited by overexpression of the PB2 protein of influenza virus, Virology, 197, 642, 10.1006/viro.1993.1639
R Coloma, 2009, The structure of a biologically active influenza virus ribonucleoprotein complex, PLoS Pathog, 5, e1000491, 10.1371/journal.ppat.1000491
S Ohkura, 2011, Novel escape mutants suggest an extensive TRIM5alpha binding site spanning the entire outer surface of the murine leukemia virus capsid protein, PLoS Pathog, 7, e1002011, 10.1371/journal.ppat.1002011
BK Ganser-Pornillos, 2011, Hexagonal assembly of a restricting TRIM5alpha protein, Proc Natl Acad Sci U S A, 108, 534, 10.1073/pnas.1013426108
K Turan, 2004, Nuclear MxA proteins form a complex with influenza virus NP and inhibit the transcription of the engineered influenza virus genome, Nucleic Acids Res, 32, 643, 10.1093/nar/gkh192
M Trost, 2000, Characterization of a novel serine/threonine kinase associated with nuclear bodies, J Biol Chem, 275, 7373, 10.1074/jbc.275.10.7373
OG Engelhardt, 2001, Interferon-induced antiviral Mx1 GTPase is associated with components of the SUMO-1 system and promyelocytic leukemia protein nuclear bodies, Exp Cell Res, 271, 286, 10.1006/excr.2001.5380
MP Lussier, 2005, MxA, a member of the dynamin superfamily, interacts with the ankyrin-like repeat domain of TRPC, J Biol Chem, 280, 19393, 10.1074/jbc.M500391200
C Zhao, 2005, Human ISG15 conjugation targets both IFN-induced and constitutively expressed proteins functioning in diverse cellular pathways, Proc Natl Acad Sci U S A, 102, 10200, 10.1073/pnas.0504754102
C Wisskirchen, 2011, Interferon-induced antiviral protein MxA interacts with the cellular RNA helicases UAP56 and URH49, J Biol Chem, 286, 34743, 10.1074/jbc.M111.251843
F Momose, 2001, Cellular splicing factor RAF-2p48/NPI-5/BAT1/UAP56 interacts with the influenza virus nucleoprotein and enhances viral RNA synthesis, J Virol, 75, 1899, 10.1128/JVI.75.4.1899-1908.2001
T Kawaguchi, 1987, Establishment and characterization of a chicken hepatocellular carcinoma cell line, LMH, Cancer Res, 47, 4460
J Stech, 2008, Rapid and reliable universal cloning of influenza A virus genes by target-primed plasmid amplification, Nucleic Acids Res, 36, e139, 10.1093/nar/gkn646
P Reuther, 2011, Targeting of the influenza A virus polymerase PB1-PB2 interface indicates strain-specific assembly differences, J Virol, 85, 13298, 10.1128/JVI.00868-11
M Palm, 2007, Differential anti-influenza activity among allelic variants at the Sus scrofa Mx1 locus, J Interferon Cytokine Res, 27, 147, 10.1089/jir.2006.0119
B Mänz, 2012, Adaptive mutations in NEP compensate for defective H5N1 RNA replication in cultured human cells, Nat Commun, 3, 802, 10.1038/ncomms1804
P Staeheli, 1984, Mx-dependent resistance to influenza viruses is induced by mouse interferons alpha and beta but not gamma, Virology, 132, 456, 10.1016/0042-6822(84)90050-3
K Tamura, 2011, MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods, Mol Biol Evol, 28, 2731, 10.1093/molbev/msr121