Pandemic Threat Posed by Avian Influenza A Viruses
暂无分享,去创建一个
[1] M. Peiris,et al. Influenza A H9N2: Aspects of Laboratory Diagnosis , 1999, Journal of Clinical Microbiology.
[2] N. Cox,et al. Genetic characterization of the pathogenic influenza A/Goose/Guangdong/1/96 (H5N1) virus: similarity of its hemagglutinin gene to those of H5N1 viruses from the 1997 outbreaks in Hong Kong. , 1999, Virology.
[3] Y. Guan,et al. Molecular characterization of H9N2 influenza viruses: were they the donors of the "internal" genes of H5N1 viruses in Hong Kong? , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[4] Yoshihiro Kawaoka,et al. Amino Acid Residues Contributing to the Substrate Specificity of the Influenza A Virus Neuraminidase , 1999, Journal of Virology.
[5] C. Bridges,et al. Case-control study of risk factors for avian influenza A (H5N1) disease, Hong Kong, 1997. , 1999, The Journal of infectious diseases.
[6] N. Cox,et al. A Mouse Model for the Evaluation of Pathogenesis and Immunity to Influenza A (H5N1) Viruses Isolated from Humans , 1999, Journal of Virology.
[7] D. Steinhauer,et al. Role of hemagglutinin cleavage for the pathogenicity of influenza virus. , 1999, Virology.
[8] K. Subbarao,et al. Recombinant influenza A virus vaccines for the pathogenic human A/Hong Kong/97 (H5N1) viruses. , 1999, The Journal of infectious diseases.
[9] H. Goto,et al. Biological Heterogeneity, Including Systemic Replication in Mice, of H5N1 Influenza A Virus Isolates from Humans in Hong Kong , 1999, Journal of Virology.
[10] Keiji Fukuda,et al. Detection of Antibody to Avian Influenza A (H5N1) Virus in Human Serum by Using a Combination of Serologic Assays , 1999, Journal of Clinical Microbiology.
[11] H. Klenk,et al. Understanding influenza virus pathogenicity. , 1999, Trends in microbiology.
[12] J. Taubenberger,et al. Origin and evolution of the 1918 "Spanish" influenza virus hemagglutinin gene. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[13] R. Webster,et al. The Surface Glycoproteins of H5 Influenza Viruses Isolated from Humans, Chickens, and Wild Aquatic Birds Have Distinguishable Properties , 1999, Journal of Virology.
[14] D. Levy,et al. Influenza A virus lacking the NS1 gene replicates in interferon-deficient systems. , 1998, Virology.
[15] Y. Guan,et al. Characterization of avian H5N1 influenza viruses from poultry in Hong Kong. , 1998, Virology.
[16] R. Webster,et al. Characterization of influenza A/HongKong/156/97 (H5N1) virus in a mouse model and protective effect of zanamivir on H5N1 infection in mice. , 1998, The Journal of infectious diseases.
[17] R. Webster,et al. Evidence for zanamivir resistance in an immunocompromised child infected with influenza B virus. , 1998, The Journal of infectious diseases.
[18] Yoshihiro Kawaoka,et al. Molecular Basis for the Generation in Pigs of Influenza A Viruses with Pandemic Potential , 1998, Journal of Virology.
[19] H. Goto,et al. A novel mechanism for the acquisition of virulence by a human influenza A virus. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[20] David E. Swayne,et al. Comparisons of Highly Virulent H5N1 Influenza A Viruses Isolated from Humans and Chickens from Hong Kong , 1998, Journal of Virology.
[21] C. Marwick. Influenza vaccine virus strains chosen. , 1998, JAMA.
[22] M. Peiris,et al. Clinical features and rapid viral diagnosis of human disease associated with avian influenza A H5N1 virus , 1998, The Lancet.
[23] R. Webster,et al. Human influenza A H5N1 virus related to a highly pathogenic avian influenza virus , 1998, The Lancet.
[24] N. Cox,et al. Characterization of an avian influenza A (H5N1) virus isolated from a child with a fatal respiratory illness. , 1998, Science.
[25] F. Hayden,et al. New approaches to influenza chemotherapy. Neuraminidase inhibitors. , 1998, Drugs.
[26] P. Palese,et al. The influenza virus NEP (NS2 protein) mediates the nuclear export of viral ribonucleoproteins , 1998, The EMBO journal.
[27] J. Banks,et al. Characterisation of an avian influenza A virus isolated from a human – is an intermediate host necessary for the emergence of pandemic influenza viruses? , 1998, Archives of Virology.
[28] A. Virus. Update: isolation of avian influenza A(H5N1) viruses from humans--Hong Kong, 1997-1998. , 1998, MMWR. Morbidity and mortality weekly report.
[29] G. Neumann,et al. Nuclear import and export of influenza virus nucleoprotein , 1997, Journal of virology.
[30] H. Goto,et al. Mutations affecting the sensitivity of the influenza virus neuraminidase to 4-guanidino-2,4-dideoxy-2,3-dehydro-N-acetylneuraminic acid. , 1997, Virology.
[31] K Nakayama,et al. Furin: a mammalian subtilisin/Kex2p-like endoprotease involved in processing of a wide variety of precursor proteins. , 1997, The Biochemical journal.
[32] N. Seidah,et al. Eukaryotic protein processing: endoproteolysis of precursor proteins. , 1997, Current opinion in biotechnology.
[33] Leming,et al. Efficacy and safety of the neuraminidase inhibitor zanamivir in the treatment of influenzavirus infections , 1997 .
[34] S. Teneberg,et al. Avian influenza A viruses differ from human viruses by recognition of sialyloligosaccharides and gangliosides and by a higher conservation of the HA receptor-binding site. , 1997, Virology.
[35] N V Bovin,et al. Specification of receptor-binding phenotypes of influenza virus isolates from different hosts using synthetic sialylglycopolymers: non-egg-adapted human H1 and H3 influenza A and influenza B viruses share a common high binding affinity for 6'-sialyl(N-acetyllactosamine). , 1997, Virology.
[36] Maricarmen García,et al. Virulence-associated sequence duplication at the hemagglutinin cleavage site of avian influenza viruses. , 1997, Virus research.
[37] M. Perdue,et al. Pathogenicity and diagnosis of H5N2 Mexican avian influenza viruses in chickens. , 1997, Avian diseases.
[38] Y. Kawaoka,et al. Differences in sialic acid-galactose linkages in the chicken egg amnion and allantois influence human influenza virus receptor specificity and variant selection , 1997, Journal of virology.
[39] Jeffery K. Taubenberger,et al. Initial Genetic Characterization of the 1918 “Spanish” Influenza Virus , 1997, Science.
[40] P. Wang,et al. The NPI-1/NPI-3 (karyopherin alpha) binding site on the influenza a virus nucleoprotein NP is a nonconventional nuclear localization signal , 1997, Journal of virology.
[41] O. Fletcher,et al. Comparative pathology of chickens experimentally inoculated with avian influenza viruses of low and high pathogenicity. , 1997, Avian diseases.
[42] R. Webster. Influenza virus: transmission between species and relevance to emergence of the next human pandemic. , 1997, Archives of virology. Supplementum.
[43] Y. Guan,et al. Copyright � 1996, American Society for Microbiology Emergence of Avian H1N1 Influenza Viruses in Pigs in China , 1996 .
[44] J. Banks,et al. Avian influenza virus isolated from a woman with conjunctivitis , 1996, The Lancet.
[45] Maricarmen García,et al. Heterogeneity in the haemagglutinin gene and emergence of the highly pathogenic phenotype among recent H5N2 avian influenza viruses from Mexico. , 1996, The Journal of general virology.
[46] Y. Kawaoka,et al. Pathological studies of chickens experimentally infected with two highly pathogenic avian influenza viruses. , 1996, Avian pathology : journal of the W.V.P.A.
[47] R. Webster,et al. Different hemagglutinin cleavage site variants of H7N7 in an influenza outbreak in chickens in Leipzig, Germany. , 1996, Virology.
[48] R. Webster,et al. Survey of the hemagglutinin (HA) cleavage site sequence of H5 and H7 avian influenza viruses: amino acid sequence at the HA cleavage site as a marker of pathogenicity potential. , 1996, Avian diseases.
[49] R. Webster,et al. Characterization of a novel influenza hemagglutinin, H15: criteria for determination of influenza A subtypes. , 1996, Virology.
[50] R. Lamb,et al. Orthomyxoviridae: The Viruses and Their Replication. , 1996 .
[51] R. Webster,et al. Origin and molecular changes associated with emergence of a highly pathogenic H5N2 influenza virus in Mexico. , 1995, Virology.
[52] H. Klenk,et al. Influenza viruses, cell enzymes, and pathogenicity. , 1995, American journal of respiratory and critical care medicine.
[53] R. Webster,et al. Seroepidemiological and molecular evidence for the presence of two H3N8 equine influenza viruses in China in 1993-94. , 1995, The Journal of general virology.
[54] K. Shortridge,et al. Genetic analysis of porcine H3N2 viruses originating in southern China. , 1995, The Journal of general virology.
[55] Y. Kawaoka,et al. Molecular changes in virulent mutants arising from avirulent avian influenza viruses during replication in 14-day-old embryonated eggs. , 1995, Virology.
[56] H. Kida,et al. The appearance of H3 influenza viruses in seals. , 1995, The Journal of general virology.
[57] R. Webster,et al. Receptor specificity in human, avian, and equine H2 and H3 influenza virus isolates. , 1994, Virology.
[58] R. Webster,et al. Infection of children with avian-human reassortant influenza virus from pigs in Europe. , 1994, Virology.
[59] R. Rott,et al. Nonhomologous recombination between the hemagglutinin gene and the nucleoprotein gene of an influenza virus. , 1994, Virology.
[60] Y. Kawaoka,et al. Proprotein-processing endoproteases PC6 and furin both activate hemagglutinin of virulent avian influenza viruses , 1994, Journal of virology.
[61] J. Skehel,et al. Structure of influenza haemagglutinin at the pH of membrane fusion , 1994, Nature.
[62] R. Webster,et al. Potential for transmission of avian influenza viruses to pigs. , 1994, The Journal of general virology.
[63] S. Brennan,et al. Cleavage of proalbumin peptides by furin reveals unexpected restrictions at the P2 and P′1 sites , 1994, FEBS letters.
[64] R. Webster,et al. Emergence of a potentially pathogenic H5N2 influenza virus in chickens. , 1994, Virology.
[65] Y. Kawaoka,et al. Reverse genetics provides direct evidence for a correlation of hemagglutinin cleavability and virulence of an avian influenza A virus , 1994, Journal of virology.
[66] I. Brown,et al. Isolation of an influenza A virus of unusual subtype (H1N7) from pigs in England, and the subsequent experimental transmission from pig to pig. , 1994, Veterinary microbiology.
[67] Y. Kawaoka,et al. Sequence specificity of furin, a proprotein-processing endoprotease, for the hemagglutinin of a virulent avian influenza virus , 1994, Journal of virology.
[68] H. Klenk,et al. Host cell proteases controlling virus pathogenicity. , 1994, Trends in microbiology.
[69] R. Lamb,et al. Influenza virus M2 protein ion channel activity stabilizes the native form of fowl plague virus hemagglutinin during intracellular transport , 1994, Journal of virology.
[70] J. Oxford,et al. Antigenic and sequence analysis of H3 influenza virus haemagglutinins from pigs in Italy. , 1994, The Journal of general virology.
[71] Y. Suzuki,et al. Gangliosides as influenza virus receptors. Variation of influenza viruses and their recognition of the receptor sialo-sugar chains. , 1994, Progress in lipid research.
[72] R. Webster. Are equine 1 influenza viruses still present in horses? , 1993, Equine veterinary journal.
[73] A. Ishihama,et al. Molecular assembly of influenza virus: association of the NS2 protein with virion matrix. , 1993, Virology.
[74] J. Paulson,et al. Influenza virus strains selectively recognize sialyloligosaccharides on human respiratory epithelium; the role of the host cell in selection of hemagglutinin receptor specificity. , 1993, Virus research.
[75] D. M. Ryan,et al. Rational design of potent sialidase-based inhibitors of influenza virus replication , 1993, Nature.
[76] W. J. Bean,et al. Origin of the pandemic 1957 H2 influenza A virus and the persistence of its possible progenitors in the avian reservoir. , 1993, Virology.
[77] C. J. Randall,et al. An outbreak of highly pathogenic avian influenza in turkeys in Great Britain in 1991 , 1993, Veterinary Record.
[78] B. Murphy,et al. A single amino acid in the PB2 gene of influenza A virus is a determinant of host range , 1993, Journal of virology.
[79] R. Webster,et al. Genetic reassortment between avian and human influenza A viruses in Italian pigs. , 1993, Virology.
[80] W. Garten,et al. A H1 hemagglutinin of a human influenza A virus with a carbohydrate-modulated receptor binding site and an unusual cleavage site , 1993, Virus Research.
[81] Y. Kawaoka,et al. Biologic importance of neuraminidase stalk length in influenza A virus , 1993, Journal of virology.
[82] A. Hay,et al. Influence of amantadine resistance mutations on the pH regulatory function of the M2 protein of influenza A viruses. , 1992, Virology.
[83] H. Scheiblauer,et al. Interactions between bacteria and influenza A virus in the development of influenza pneumonia. , 1992, The Journal of infectious diseases.
[84] Y. Kawaoka,et al. Location and character of the cellular enzyme that cleaves the hemagglutinin of a virulent avian influenza virus. , 1992, Virology.
[85] K. Klimpel,et al. Human furin is a calcium-dependent serine endoprotease that recognizes the sequence Arg-X-X-Arg and efficiently cleaves anthrax toxin protective antigen. , 1992, The Journal of biological chemistry.
[86] N. Katunuma,et al. Isolation and characterization of a novel trypsin-like protease found in rat bronchiolar epithelial Clara cells. A possible activator of the viral fusion glycoprotein. , 1992, The Journal of biological chemistry.
[87] M. Vey,et al. Influenza virus hemagglutinin with multibasic cleavage site is activated by furin, a subtilisin‐like endoprotease. , 1992, The EMBO journal.
[88] A. Gould,et al. Molecular pathotyping of two avian influenza viruses isolated during the Victoria 1976 outbreak. , 1992, Australian veterinary journal.
[89] H. Klenk,et al. Hemagglutinin activation of pathogenic avian influenza viruses of serotype H7 requires the protease recognition motif R-X-K/R-R☆ , 1992, Virology.
[90] R. Webster,et al. Characterization of a new avian-like influenza A virus from horses in China. , 1992, Virology.
[91] Lawrence H. Pinto,et al. Influenza virus M2 protein has ion channel activity , 1992, Cell.
[92] W. J. Bean,et al. Evolution of the H3 influenza virus hemagglutinin from human and nonhuman hosts , 1992, Journal of virology.
[93] N. Cox,et al. Human influenza A (H1N2) viruses isolated from China. , 1992, The Journal of general virology.
[94] F. Hayden,et al. Emergence and transmission of influenza A viruses resistant to amantadine and rimantadine. , 1992, Current topics in microbiology and immunology.
[95] K. Martin,et al. Nuclear transport of influenza virus ribonucleoproteins: The viral matrix protein (M1) promotes export and inhibits import , 1991, Cell.
[96] P. Barr,et al. Mammalian subtilisins: The long-sought dibasic processing endoproteases , 1991, Cell.
[97] H. Klenk,et al. Human influenza virus hemagglutinin with high sensitivity to proteolytic activation , 1991, Journal of virology.
[98] W. J. Bean,et al. Evolution of influenza A virus nucleoprotein genes: implications for the origins of H1N1 human and classical swine viruses , 1991, Journal of virology.
[99] Y. Kawaoka. Structural features influencing hemagglutinin cleavability in a human influenza A virus , 1991, Journal of virology.
[100] J. P. Davis,et al. Swine influenza virus infections. Transmission from ill pigs to humans at a Wisconsin agricultural fair and subsequent probable person-to-person transmission. , 1991, JAMA.
[101] William H. McNeill,et al. America's Forgotten Pandemic: The Influenza of 1918 , 1991 .
[102] D. Nayak,et al. Two signals mediate nuclear localization of influenza virus (A/WSN/33) polymerase basic protein 2 , 1991, Journal of virology.
[103] J. Paulson,et al. The N2 neuraminidase of human influenza virus has acquired a substrate specificity complementary to the hemagglutinin receptor specificity. , 1991, Virology.
[104] M. Hamaguchi,et al. An endoprotease homologous to the blood clotting factor X as a determinant of viral tropism in chick embryo. , 1990, The EMBO journal.
[105] R. Webster,et al. Molecular characterization of a new hemagglutinin, subtype H14, of influenza A virus. , 1990, Virology.
[106] D. Nayak,et al. Function of two discrete regions is required for nuclear localization of polymerase basic protein 1 of A/WSN/33 influenza virus (H1 N1) , 1990, Molecular and cellular biology.
[107] P. Palese,et al. Introduction of site-specific mutations into the genome of influenza virus. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[108] G. N. Rogers,et al. Receptor binding properties of human and animal H1 influenza virus isolates. , 1989, Virology.
[109] R. Webster,et al. Avian-to-human transmission of the PB1 gene of influenza A viruses in the 1957 and 1968 pandemics , 1989, Journal of virology.
[110] C. Naeve,et al. Single-amino-acid substitution in an antigenic site of influenza virus hemagglutinin can alter the specificity of binding to cell membrane-associated gangliosides , 1989, Journal of virology.
[111] R. Webster,et al. Antigenic and molecular characterization of subtype H13 hemagglutinin of influenza virus. , 1989, Virology.
[112] R. Webster,et al. Interplay between carbohydrate in the stalk and the length of the connecting peptide determines the cleavability of influenza virus hemagglutinin , 1989, Journal of virology.
[113] R. Rott,et al. Increased viral pathogenicity after insertion of a 28S ribosomal RNA sequence into the haemagglutinin gene of an influenza virus , 1989, Nature.
[114] B. Murphy,et al. The B allele of the NS gene of avian influenza viruses, but not the A allele, attenuates a human influenza A virus for squirrel monkeys. , 1989, Virology.
[115] W. J. Bean,et al. Biologic potential of amantadine-resistant influenza A virus in an avian model. , 1989, The Journal of infectious diseases.
[116] W. J. Bean,et al. Distinct lineages of influenza virus H4 hemagglutinin genes in different regions of the world. , 1989, Virology.
[117] H. Klenk,et al. Mutations at the cleavage site of the hemagglutinin after the pathogenicity of influenza virus A/chick/Penn/83 (H5N2). , 1989, Virology.
[118] H. Klenk,et al. The Molecular Biology of Influenza Virus Pathogenicity , 1988, Advances in Virus Research.
[119] R. Webster,et al. Molecular mechanism of acquisition of virulence in influenza virus in nature. , 1988, Microbial pathogenesis.
[120] R. Lamb,et al. Influenza A virus M2 protein: monoclonal antibody restriction of virus growth and detection of M2 in virions , 1988, Journal of virology.
[121] R. Krug,et al. Influenza virus RNA replication in vitro: synthesis of viral template RNAs and virion RNAs in the absence of an added primer , 1988, Journal of virology.
[122] S. Cusack,et al. Structure of the influenza virus haemagglutinin complexed with its receptor, sialic acid , 1988, Nature.
[123] R. Webster,et al. Protection against lethal influenza with neuraminidase. , 1988, Virology.
[124] E. Naylor,et al. Fish farming and influenza pandemics , 1988, Nature.
[125] R. Webster,et al. Origin of the hemagglutinin gene of H3N2 influenza viruses from pigs in China. , 1988, Virology.
[126] R. Webster,et al. Sequence requirements for cleavage activation of influenza virus hemagglutinin expressed in mammalian cells. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[127] Ann Nestorowicz,et al. Molecular analysis of the hemagglutinin genes of Australian H7N7 influenza viruses: role of passerine birds in maintenance or transmission? , 1987, Virology.
[128] B. Murphy,et al. The avian influenza virus nucleoprotein gene and a specific constellation of avian and human virus polymerase genes each specify attenuation of avian-human influenza A/Pintail/79 reassortant viruses for monkeys , 1987, Journal of virology.
[129] C. Naeve,et al. Antigenic and genetic conservation of H3 influenza virus in wild ducks. , 1987, Virology.
[130] R. Webster,et al. Emergence of amantadine-resistant H5N2 avian influenza virus during a simulated layer flock treatment program. , 1987, Avian diseases.
[131] R. Webster,et al. Molecular analyses of the hemagglutinin genes of H5 influenza viruses: origin of a virulent turkey strain. , 1987, Virology.
[132] H. Klenk,et al. Role of Staphylococcus protease in the development of influenza pneumonia , 1987, Nature.
[133] J. Skehel,et al. The structure and function of the hemagglutinin membrane glycoprotein of influenza virus. , 1987, Annual review of biochemistry.
[134] J. N. Varghese,et al. Three-dimensional structure of a complex of antibody with influenza virus neuraminidase , 1987, Nature.
[135] R. Webster,et al. Glycosylation affects cleavage of an H5N2 influenza virus hemagglutinin and regulates virulence. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[136] J. Leunissen,et al. Evolutionary conserved close linkage of the c‐fes/fps proto‐oncogene and genetic sequences encoding a receptor‐like protein. , 1986, The EMBO journal.
[137] R. Webster,et al. Antigenic mapping of an avian H1 influenza virus haemagglutinin and interrelationships of H1 viruses from humans, pigs and birds. , 1986, The Journal of general virology.
[138] W. J. Bean,et al. Characterization of two influenza A viruses from a pilot whale , 1986, Journal of virology.
[139] W. J. Bean,et al. Molecular changes in A/Chicken/Pennsylvania/83 (H5N2) influenza virus associated with acquisition of virulence. , 1986, Virology.
[140] R. Manvell,et al. Experimental assessment of the pathogenicity of eight avian influenza A viruses of H5 subtype for chickens, turkeys, ducks and quail. , 1986, Avian pathology : journal of the W.V.P.A.
[141] C. Scholtissek,et al. The nucleoprotein as a possible major factor in determining host specificity of influenza H3N2 viruses. , 1985, Virology.
[142] J. Skehel,et al. The molecular basis of the specific anti‐influenza action of amantadine. , 1985, The EMBO journal.
[143] R. Webster,et al. Evolution of the A/Chicken/Pennsylvania/83 (H5N2) influenza virus. , 1985, Virology.
[144] W. J. Bean,et al. Chemotherapy and vaccination: a possible strategy for the control of highly virulent influenza virus , 1985, Journal of virology.
[145] W G Laver,et al. An 18-amino acid deletion in an influenza neuraminidase. , 1985, Virology.
[146] W. J. Bean,et al. Characterization of virulent and avirulent A/chicken/Pennsylvania/83 influenza A viruses: potential role of defective interfering RNAs in nature , 1985, Journal of virology.
[147] J. Paulson. Interactions of Animal Viruses with Cell Surface Receptors , 1985 .
[148] C. Naeve,et al. Is virulence of H5N2 influenza viruses in chickens associated with loss of carbohydrate from the hemagglutinin? , 1984, Virology.
[149] W. J. Bean,et al. Are seals frequently infected with avian influenza viruses? , 1984, Journal of virology.
[150] C. Naeve,et al. Mutations in the hemagglutinin receptor-binding site can change the biological properties of an influenza virus , 1984, Journal of virology.
[151] J. Oxford,et al. An investigation of antigenic drift of neuraminidases of influenza A (H1N1) viruses , 1984, Journal of Hygiene.
[152] J. Paulson,et al. Differential sensitivity of human, avian, and equine influenza A viruses to a glycoprotein inhibitor of infection: selection of receptor specific variants. , 1983, Virology.
[153] R. Webster,et al. Evaluation of the A/Seal/Mass/1/80 virus in squirrel monkeys , 1983, Infection and immunity.
[154] C. Scholtissek,et al. Genetic relatedness of hemagglutinins of the H1 subtype of influenza A viruses isolated from swine and birds. , 1983, Virology.
[155] C. Naeve,et al. Altered tissue tropism of human-avian reassortant influenza viruses. , 1983, Virology.
[156] I. Wilson,et al. Single amino acid substitutions in influenza haemagglutinin change receptor binding specificity , 1983, Nature.
[157] J. Paulson,et al. Receptor determinants of human and animal influenza virus isolates: differences in receptor specificity of the H3 hemagglutinin based on species of origin. , 1983, Virology.
[158] K. Shortridge,et al. AN INFLUENZA EPICENTRE? , 1982, The Lancet.
[159] R. Webster,et al. Virulence of Avian Influenza A Viruses for Squirrel Monkeys , 1982, Infection and immunity.
[160] W G Laver,et al. Molecular mechanisms of variation in influenza viruses , 1982, Nature.
[161] W. J. Bean,et al. Mass mortality of harbor seals: pneumonia associated with influenza A virus. , 1982, Science.
[162] A. Helenius,et al. Membrane fusion activity of influenza virus. , 1982, The EMBO journal.
[163] W. J. Bean,et al. Characterization of an influenza A virus from seals. , 1981, Virology.
[164] H. Klenk,et al. Proteolytic cleavage of influenza virus hemagglutinins: primary structure of the connecting peptide between HA1 and HA2 determines proteolytic cleavability and pathogenicity of Avian influenza viruses. , 1981, Virology.
[165] T. Ogawa,et al. Genes involved in the virulence of an avian influenza virus. , 1981, Virology.
[166] R. Webster,et al. Conjunctivitis in human beings caused by influenza A virus of seals. , 1981, The New England journal of medicine.
[167] R. Krug,et al. A unique cap(m7GpppXm)-dependent influenza virion endonuclease cleaves capped RNAs to generate the primers that initiate viral RNA transcription , 1981, Cell.
[168] I. Wilson,et al. Structural identification of the antibody-binding sites of Hong Kong influenza haemagglutinin and their involvement in antigenic variation , 1981, Nature.
[169] I. Wilson,et al. Structure of the haemagglutinin membrane glycoprotein of influenza virus at 3 Å resolution , 1981, Nature.
[170] M. Pensaert,et al. Evidence for the natural transmission of influenza A virus from wild ducts to swine and its potential importance for man. , 1981, Bulletin of the World Health Organization.
[171] Y. Matsuoka,et al. Duck influenza lacking evidence of disease signs and immune response , 1980, Infection and immunity.
[172] R. Webster,et al. The perpetuation of orthomyxoviruses and paramyxoviruses in Canadian waterfowl. , 1980, Canadian journal of microbiology.
[173] W. J. Bean,et al. Genetic reassortment of influenza A viruses in the intestinal tract of ducks. , 1980, Virology.
[174] W. J. Bean,et al. Recombination of human influenza A viruses in nature , 1980, Nature.
[175] J. F. Young,et al. Evolution of human influenza A viruses in nature: recombination contributes to genetic variation of H1N1 strains. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[176] R. Krug,et al. Are the 5′ ends of influenza viral mrnas synthesized in vivo donated by host mRNAs? , 1979, Cell.
[177] H. Klenk,et al. The structure of the hemagglutinin, a determinant for the pathogenicity of influenza viruses. , 1979, Virology.
[178] C. Scholtissek,et al. Host range recombinants of fowl plague (influenza A) virus. , 1978, Virology.
[179] C. Scholtissek,et al. Genetic relatedness between the new 1977 epidemic strains (H1N1) of influenza and human influenza strains isolated between 1947 and 1957 (H1N1). , 1978, Virology.
[180] Katsuhisa Nakajima,et al. Recent human influenza A (H1N1) viruses are closely related genetically to strains isolated in 1950 , 1978, Nature.
[181] C. Scholtissek,et al. On the origin of the human influenza virus subtypes H2N2 and H3N2. , 1978, Virology.
[182] W. J. Bean,et al. Intestinal influenza: Replication and characterization of influenza viruses in ducks , 1978, Virology.
[183] C. Chu,et al. Influenza in China in 1977: recurrence of influenzavirus A subtype H1N1. , 1978, Bulletin of the World Health Organization.
[184] A. A. Sazonov,et al. Comparison of influenza viruses isolated from man and from whales. , 1978, Bulletin of the World Health Organization.
[185] J. Almond,et al. A single gene determines the host range of influenza virus , 1977, Nature.
[186] G. Alexandrova,et al. Some problems of modern influenza prophylaxis with live vaccine. , 1977, The Journal of infectious diseases.
[187] D. Johnson,et al. Epidemiologic studies of the 1975 avian influenza outbreak in chickens in Alabama. , 1977, Avian diseases.
[188] H. Klenk,et al. Activation of influenza A viruses by trypsin treatment. , 1975, Virology.
[189] P. Choppin,et al. Enhancement of the infectivity of influenza A and B viruses by proteolytic cleavage of the hemagglutinin polypeptide. , 1975, Virology.
[190] R. Compans,et al. Characterization of temperature sensitive influenza virus mutants defective in neuraminidase. , 1974, Virology.
[191] D. Johnson,et al. Type-A influenza viruses isolated from wild free-flying ducks in California. , 1974, Avian diseases.
[192] M. Kaplan,et al. WHO coordinated research on the role of animals in influenza epidemiology: introduction. , 1972, Bulletin of the World Health Organization.
[193] R. Webster,et al. Fowl plague virus from man. , 1970, The Journal of infectious diseases.
[194] W Ferreira,et al. Origin and progress of the 1968-69 Hong Kong influenza epidemic. , 1969, Bulletin of the World Health Organization.
[195] W B Becker,et al. The isolation and classification of Tern virus: Influenza Virus A/Tern/South Africa/1961 , 1966, Journal of Hygiene.
[196] A. Gottschalk. Neuraminidase: the specific enzyme of influenza virus and Vibrio cholerae. , 1957, Biochimica et biophysica acta.
[197] M. Hilleman. Antigenic variation of influenza viruses. , 1954, Annual review of microbiology.
[198] Sir Macfarlane Burnet. The Influenza Virus , 1953 .
[199] G. K. Hirst. THE AGGLUTINATION OF RED CELLS BY ALLANTOIC FLUID OF CHICK EMBRYOS INFECTED WITH INFLUENZA VIRUS. , 1941, Science.
[200] H. HOWES,et al. Diseases of Poultry , 1941, Nature.
[201] F. Burnet. INFLUENZA VIRUS ON THE DEVELOPING EGG , 1937 .
[202] Wilson Smith,et al. A Virus obtained from influenza patients , 1933 .