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流行性感冒病毒鸡胚高产株的遗传特性分析 被引量:2

Identification of Mutations in a High-yielding Strain of Influenza Virus
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摘要 Influenza virus strain A/PR/8/34(H1N1)acquired a high-yielding property after serial passages in fertilized eggsSix internal RNA segments of the high-yielding strain were sequenced from their cloned cDNAs and compared with the corresponding original sequences in the prime A/PR/8/34(H1N1)strainNinety-three point mutations were found accumulated in six genes(PB2,PB1,PA,NP,M,and NS),which lead to 27 amino acid changesA significant low mutation frequency without amino acid change was observed in PA geneThe mutation frequency at the amino acid level was the highest(about 3%)in M2 proteinOur data suggest that the unequal distribution of mutations among different viral proteins may correlate with individual role of each protein in viral Influenza virus strain A/PR/8/34(H1N1)acquired a high-yielding property after serial passages in fertilized eggsSix internal RNA segments of the high-yielding strain were sequenced from their cloned cDNAs and compared with the corresponding original sequences in the prime A/PR/8/34(H1N1)strainNinety-three point mutations were found accumulated in six genes(PB2,PB1,PA,NP,M,and NS),which lead to 27 amino acid changesA significant low mutation frequency without amino acid change was observed in PA geneThe mutation frequency at the amino acid level was the highest(about 3%)in M2 proteinOur data suggest that the unequal distribution of mutations among different viral proteins may correlate with individual role of each protein in viral growth
出处 《病毒学报》 CAS CSCD 北大核心 2002年第4期367-370,共4页 Chinese Journal of Virology
基金 科研院所技术开发研究专项基金(NCSTE-2000-JKZX-231) "973"计划传染病防治基础研究(973-G19999054108)。
关键词 流行性感冒病毒 鸡胚高产株 遗传特性分析 高产毒株 基因突变 influenza virus high-yielding strain gene mutation
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参考文献9

  • 1Braam J,Ulmanen I,Krug R M.Molecular model of a eukaryotic transcription complex: function and movements of influenza P protein during capped RNA-primed transcription[].Cell.1983 被引量:1
  • 2Digard P,Blok V C,Inglis S C.Complex formation between influenza virus polymerase proteins expressed in Xenopus oocytes[].Journal of Virology.1989 被引量:1
  • 3Beaton A R,Krug R M.Transcription antitermination during influenza viral template RNA synthesis requires the nucleocapsid protein and the absence of a 50 capped end[].Proceedings of the National Academy of Sciences of the United States of America.1986 被引量:1
  • 4Holsinger L J,Lamb R A.Influenza virus M2 integral membrane protein is a homotetramer stabilized by formation of disulfide bond[].Journal of Virology.1991 被引量:1
  • 5Baez M,Palese P,Kilbourne E D.Gene composition of high-yielding influenza vaccine strains obtained by recombination[].The Journal of Infectious Diseases.1980 被引量:1
  • 6Hoffmann E,Neumann G A.DNA transfection system for generation of influenza A virus from eight plasmids[].Proceedings of the National Academy of Sciences of the United States of America.2000 被引量:1
  • 7Shapiro G I,Gurney T Jr,Krug R M.Influenza virus gene expression:control mechanisms at early and late times of infection and nuclear-cytoplasmic transport of virus-specific RNAs[].Journal of Virology.1987 被引量:1
  • 8Blaas D,Patzelt E,Kuechler E.Identification of the cap binding protein of influenza virus[].Nucleic Acids Research.1982 被引量:1
  • 9McGeoch D,Fellner P,Newton C.Influenza virus genome consists of eight distinct RNA species[].Proceedings of the National Academy of Sciences of the United States of America.1976 被引量:1

同被引文献46

  • 1卢建红,邵卫星,刘玉良,贾立军,韦栋平,石火英,刘秀梵.用8质粒病毒拯救系统产生H9N2/WSN重组A型流行性感冒病毒[J].病毒学报,2005,21(1):48-53. 被引量:9
  • 2卢建红,龙进学,邵卫星,韦栋平,刘秀梵,张艳梅.用反向遗传操作技术产生致弱的H5亚型重组流感病毒[J].微生物学报,2005,45(1):53-57. 被引量:22
  • 3Smith DJ, Lapedes AS, de Jong JC, et al. Mapping the antigenic and genetic evolution of influenza virus [ J ]. Science, 2004, 305 (5682) :371-376. 被引量:1
  • 4Katz JM, Wang M, Webster RG. Direct sequencing of the HA gene influenza (H3N2) virus in original clinical samples reveals sequence identity with mammalian cell-growth virus [ J]. J Virol, 1990, 64(4) :1808-1811. 被引量:1
  • 5Hardy CT, Young SA, Webster RG, et al. Egg fluids and cells of the chorioallantoic membrane of embryonated chicken eggs can select different variants of influenza A ( H3N2 ) viruses [ J ]. Virology, 1995,211 ( 1 ) :302-306. 被引量:1
  • 6Katz JM, Naeve CW, Webster RG. Host cell-mediated variation in H3N2 influenza viruses [ J]. Virology, 1987, 156 (2) : 386-395. 被引量:1
  • 7Kodihalli S, Justewicz DM, Gubareva LV, et al. Selection of a single amino acid substitution in the hamagglutinin molecule by the chicken eggs can render influenza A virus (H3) candidate vaccine ineffective [J]. J Virol, 1995, 69(8) :4888-4897. 被引量:1
  • 8Rocha EP, Xu X, Hall HE, et al. Comparison of 10 influenza A (H1N1 and H3N2) haemagglutinin sequences obtained directly from clinical specimens to those of MDCK cell-and egg-grown viruses [J]. J Gen Virol, 1993, 74(Pt 11) :2513-2518. 被引量:1
  • 9Gambaryan AS, Matrosovich MN, Bender CA, et al. Differences in the biological phenotype of low-yielding (L) and high-yielding ( H ) variants of swine influenza vires A/NJ/11/76 are associated with their different receptor-binding activity [ J ]. Virology., 1998, 247(2) :223-231. 被引量:1
  • 10Katz JM, Webster RG. Amino acid sequence identity between the HA1 of influenza A ( H3N2 ) viruses grown in mammalian and primary chick kidney cells [J]. J Gen Virol, 1992, 73( Pt 5) : 1159-1165. 被引量:1

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