Molecular mechanism underlying the action of a novel fusion inhibitor of influenza A virus

被引:96
作者
Luo, GX
Torri, A
Harte, WE
Danetz, S
Cianci, C
Tiley, L
Day, S
Mullaney, D
Yu, KL
Ouellet, C
Dextraze, P
Meanwell, N
Colonno, R
Krystal, M
机构
[1] BRISTOL MYERS SQUIBB CO,PHARMACEUT RES INST,DEPT MACROMOL STRUCT,WALLINGFORD,CT 06492
[2] BRISTOL MYERS SQUIBB CO,PHARMACEUT RES INST,DEPT CHEM,WALLINGFORD,CT 06492
[3] BRISTOL MYERS SQUIBB PHARMACEUT RES INST,DEPT CHEM,CANDIAC,PQ J5R 1J1,CANADA
关键词
D O I
10.1128/JVI.71.5.4062-4070.1997
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
In the initial stages of influenza virus infection, the hemagglutinin (HA) protein of influenza virus mediates both adsorption and penetration of the virus into the host cell. Recently, we identified and characterized BMY-27709 as an inhibitor of the H1 and H2 subtypes of influenza A virus that specifically inhibits the HA function necessary for virus-cell membrane fusion (G.-X. Luo, R. Colonno, and M. Krystal, Virology 226:66-76, 1996). Studies presented herein show that the inhibition is mediated through specific interaction with the HA protein. This binding represses the low-pH-induced conformational change of the HA protein which is a prerequisite for membrane fusion. In an attempt to define the binding pocket within the HA molecule, a number of drug-resistant viruses have been isolated and characterized. Sequence analyses of the HA gene of these drug-resistant viruses mapped amino acid changes responsible for drug resistance to a region located near the amino terminus of HA2. In addition, we have identified inactive analogs of BRY-27709 which are able to compete out the inhibitory activity of BMY-27709. This finding suggests that inhibition of the HA-mediated membrane fusion by this class of compounds is not solely the result of binding within the HA molecule but requires specific interactions.
引用
收藏
页码:4062 / 4070
页数:9
相关论文
共 53 条
  • [1] INTERMEDIATES AND KINETICS OF MEMBRANE-FUSION
    BENTZ, J
    [J]. BIOPHYSICAL JOURNAL, 1992, 63 (02) : 448 - 459
  • [2] BENTZ J, 1993, VIRAL FUSION MECHANI, P163
  • [3] INHIBITION OF THE FUSION-INDUCING CONFORMATIONAL CHANGE OF INFLUENZA HEMAGGLUTININ BY BENZOQUINONES AND HYDROQUINONES
    BODIAN, DL
    YAMASAKI, RB
    BUSWELL, RL
    STEARNS, JF
    WHITE, JM
    KUNTZ, ID
    [J]. BIOCHEMISTRY, 1993, 32 (12) : 2967 - 2978
  • [4] BRUNNER J, 1993, VIRAL FUSION MECHANI, P67
  • [5] STRUCTURE OF INFLUENZA HEMAGGLUTININ AT THE PH OF MEMBRANE-FUSION
    BULLOUGH, PA
    HUGHSON, FM
    SKEHEL, JJ
    WILEY, DC
    [J]. NATURE, 1994, 371 (6492) : 37 - 43
  • [6] A SPRING-LOADED MECHANISM FOR THE CONFORMATIONAL CHANGE OF INFLUENZA HEMAGGLUTININ
    CARR, CM
    KIM, PS
    [J]. CELL, 1993, 73 (04) : 823 - 832
  • [7] FLU VIRUS INVASION - HALFWAY THERE
    CARR, CM
    KIM, PS
    [J]. SCIENCE, 1994, 266 (5183) : 234 - 236
  • [8] DELAY TIME FOR INFLUENZA-VIRUS HEMAGGLUTININ-INDUCED MEMBRANE-FUSION DEPENDS ON HEMAGGLUTININ SURFACE-DENSITY
    CLAGUE, MJ
    SCHOCH, C
    BLUMENTHAL, R
    [J]. JOURNAL OF VIROLOGY, 1991, 65 (05) : 2402 - 2407
  • [9] Membrane fusion mediated by the influenza virus hemagglutinin requires the concerted action of at least three hemagglutinin trimers
    Danieli, T
    Pelletier, SL
    Henis, YI
    White, JM
    [J]. JOURNAL OF CELL BIOLOGY, 1996, 133 (03) : 559 - 569
  • [10] FUSION MUTANTS OF THE INFLUENZA-VIRUS HEMAGGLUTININ GLYCOPROTEIN
    DANIELS, RS
    DOWNIE, JC
    HAY, AJ
    KNOSSOW, M
    SKEHEL, JJ
    WANG, ML
    WILEY, DC
    [J]. CELL, 1985, 40 (02) : 431 - 439