RhoA-derived peptide dimers share mechanistic properties with other polyanionic inhibitors of respiratory syncytial virus (RSV), including disruption of viral attachment and dependence on RSV G

被引:16
作者
Budge, PJ
Li, YQ
Beeler, JA
Graham, BS
机构
[1] NIAID, Vaccine Res Ctr, NIH, Viral Pathogenesis Lab, Bethesda, MD 20892 USA
[2] Vanderbilt Univ, Med Ctr, Dept Microbiol & Immunol, Nashville, TN 37232 USA
[3] US FDA, Ctr Biol Evaluat & Res, Lab Pediat & Resp Virus Dis, Bethesda, MD 20892 USA
关键词
D O I
10.1128/JVI.78.10.5015-5022.2004
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Large polyanionic molecules, such as sulfated polysaccharides (including soluble heparin and dextran sulfate), synthetic polyanionic polymers, and negatively charged proteins, have been shown to broadly inhibit several enveloped viruses. We recently reported the antiviral activity of a peptide derived from amino acids 77 to 95 of a potential binding partner of respiratory syncytial virus F protein (RSV F), the GTPase RhoA. A subsequent study with a truncated peptide (amino acids 80 to 94) revealed that optimal antiviral activity required dimerization via intermolecular disulfide bonds. We report here that the net negative charge of this peptide is also a determining factor for its antiviral activity and that it, like other polyanions, inhibits virus attachment. In a flow cytometry-based binding assay, peptide 80-94, heparin, and dextran sulfate inhibited the attachment of virus to cells at 4degreesC at the same effective concentrations at which they prevent viral infectivity. Interestingly, time-of-addition experiments revealed that peptide 80-94 and soluble heparin were also able to inhibit the infectivity of a virus that had been prebound to cells at 4degreesC, as had previously been shown for dextran sulfate, suggesting a potential role for postattachment effects of polyanions on RSV entry. Neutralization experiments with recombinant viruses showed that the antiviral activities of peptide 80-94 and dextran sulfate were diminished in the absence of the RSV attachment glycoprotein (G). Taken together, these data indicate that the antiviral activity of RhoA-derived peptides is functionally similar to that of other polyanions, is dependent on RSV G, and does not specifically relate to a protein-protein interaction between F and RhoA.
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页码:5015 / 5022
页数:8
相关论文
共 53 条
[1]   Potent inhibition of respiratory syncytial virus by polyoxometalates of several structural classes [J].
Barnard, DL ;
Hill, CL ;
Gage, T ;
Matheson, JE ;
Huffman, JH ;
Sidwell, RW ;
Otto, MI ;
Schinazi, RF .
ANTIVIRAL RESEARCH, 1997, 34 (01) :27-37
[2]   NEUTRALIZATION EPITOPES OF THE F-GLYCOPROTEIN OF RESPIRATORY SYNCYTIAL VIRUS - EFFECT OF MUTATION UPON FUSION FUNCTION [J].
BEELER, JA ;
COELINGH, KV .
JOURNAL OF VIROLOGY, 1989, 63 (07) :2941-2950
[3]   Profilin is required for viral morphogenesis, syncytium formation, and cell-specific stress fiber induction by respiratory syncytial virus [J].
Bitko, V ;
Oldenburg, A ;
Garmon, NE ;
Barik, S .
BMC MICROBIOLOGY, 2003, 3 (1) :1-12
[4]   Heparin-like structures on respiratory syncytial virus are involved in its infectivity in vitro [J].
Bourgeois, C ;
Bour, JB ;
Lidholt, K ;
Gauthray, C ;
Pothier, P .
JOURNAL OF VIROLOGY, 1998, 72 (09) :7221-7227
[5]   Antiviral activity of RhoA-derived peptides against respiratory syncytial virus is dependent on formation of peptide dimers [J].
Budge, PJ ;
Lebowitz, J ;
Graham, BS .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2003, 47 (11) :3470-3477
[6]   Recombinant respiratory syncytial virus from which the entire SH gene has been deleted grows efficiently in cell culture and exhibits site-specific attenuation in the respiratory tract of the mouse [J].
Bukreyev, A ;
Whitehead, SS ;
Murphy, BR ;
Collins, PL .
JOURNAL OF VIROLOGY, 1997, 71 (12) :8973-8982
[7]   DEXTRAN SULFATE BLOCKS ANTIBODY-BINDING TO THE PRINCIPAL NEUTRALIZING DOMAIN OF HUMAN-IMMUNODEFICIENCY-VIRUS TYPE-1 WITHOUT INTERFERING WITH GP120-CD4 INTERACTIONS [J].
CALLAHAN, LN ;
PHELAN, M ;
MALLINSON, M ;
NORCROSS, MA .
JOURNAL OF VIROLOGY, 1991, 65 (03) :1543-1550
[8]  
Collins PL., 2001, FIELDS VIROLOGY, P1443
[9]   The structural biology of type I viral membrane fusion [J].
Colman, PM ;
Lawrence, MC .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2003, 4 (04) :309-319
[10]   Live subgroup B respiratory syncytial virus vaccines that are attenuated, genetically stable, and immunogenic in rodents and nonhuman primates [J].
Crowe, JE ;
Bui, PT ;
Firestone, CY ;
Connors, M ;
Elkins, WR ;
Chanock, RM ;
Murphy, BR .
JOURNAL OF INFECTIOUS DISEASES, 1996, 173 (04) :829-839