Common E protein determinants for attenuation of glycosaminoglycan-binding variants of Japanese encephalitis and West Nile viruses

被引:127
作者
Lee, E
Hall, RA
Lobigs, M
机构
[1] Australian Natl Univ, Div Immunol & Genet, John Curtin Sch Med Res, Canberra, ACT 2600, Australia
[2] Univ Queensland, Dept Microbiol & Parasitol, Brisbane, Qld, Australia
关键词
D O I
10.1128/JVI.78.15.8271-8280.2004
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Natural isolates and laboratory strains of West Nile virus (WNV) and Japanese encephalitis virus (JEV) were attenuated for neuroinvasiveness in mouse models for flavivirus encephalitis by serial passage in human adenocarcinoma (SW13) cells. The passage variants displayed a small-plaque phenotype, augmented affinity for heparin-Sepharose, and a marked increase in specific infectivity for SW13 cells relative to the respective parental viruses, while the specific infectivity for Vero cells was not altered. Therefore, host cell adaptation of passage variants was most likely a consequence of altered receptor usage for virus attachment-entry with the involvement of cell surface glycosaminoglycans (GAG) in this process. In vivo blood clearance kinetics of the passage variants was markedly faster and viremia was reduced relative to the parental viruses, suggesting that affinity for GAG (ubiquitously present on cell surfaces and extracellular matrices) is a key determinant for the neuroinvasiveness of encephalitic flaviviruses. A difference in pathogenesis between WNV and JEV, which was reflected in more efficient growth in the spleen and liver of the WNV parent and passage variants, accounted for a less pronounced loss of neuroinvasiveness of GAG binding variants of WNV than JEV. Single gain-of-net-positive-charge amino acid changes at E protein residue 49, 138, 306, or 389/390, putatively positioned in two clusters on the virion surface, define molecular determinants for GAG binding and concomitant virulence attenuation that are shared by the JEV serotype flaviviruses.
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页码:8271 / 8280
页数:10
相关论文
共 38 条
[1]   Mouse neuroinvasive phenotype of West Nile virus strains varies depending upon virus genotype [J].
Beasley, DWC ;
Li, L ;
Suderman, MT ;
Barrett, ADT .
VIROLOGY, 2002, 296 (01) :17-23
[2]   Functions of cell surface heparan sulfate proteoglycans [J].
Bernfield, M ;
Götte, M ;
Park, PW ;
Reizes, O ;
Fitzgerald, ML ;
Lincecum, J ;
Zako, M .
ANNUAL REVIEW OF BIOCHEMISTRY, 1999, 68 :729-777
[3]   Dengue virus infectivity depends on envelope protein binding to target cell heparan sulfate [J].
Chen, YP ;
Maguire, T ;
Hileman, RE ;
Fromm, JR ;
Esko, JD ;
Linhardt, RJ ;
Marks, RM .
NATURE MEDICINE, 1997, 3 (08) :866-871
[4]   Film condensation of HCFC-22 on horizontal enhanced tubes [J].
Cheng, WY ;
Wang, CC ;
Hu, YZR ;
Huang, LW .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 1996, 23 (01) :79-90
[5]   NUCLEOTIDE AND COMPLETE AMINO-ACID SEQUENCES OF KUNJIN VIRUS - DEFINITIVE GENE ORDER AND CHARACTERISTICS OF THE VIRUS-SPECIFIED PROTEINS [J].
COIA, G ;
PARKER, MD ;
SPEIGHT, G ;
BYRNE, ME ;
WESTAWAY, EG .
JOURNAL OF GENERAL VIROLOGY, 1988, 69 :1-21
[6]   Monoclonal antibodies that bind to domain III of dengue virus E glycoprotein are the most efficient blockers of virus adsorption to Vero cells [J].
Crill, WD ;
Roehrig, JT .
JOURNAL OF VIROLOGY, 2001, 75 (16) :7769-7773
[7]   PARTIAL NUCLEOTIDE-SEQUENCE OF THE MURRAY VALLEY ENCEPHALITIS-VIRUS GENOME - COMPARISON OF THE ENCODED POLYPEPTIDES WITH YELLOW-FEVER VIRUS STRUCTURAL AND NONSTRUCTURAL PROTEINS [J].
DALGARNO, L ;
TRENT, DW ;
STRAUSS, JH ;
RICE, CM .
JOURNAL OF MOLECULAR BIOLOGY, 1986, 187 (03) :309-323
[8]  
GEBHARDT A, 1994, J LIPID RES, V35, P976
[9]   Heparan sulfate-mediated binding of infectious dengue virus type 2 and yellow fever virus [J].
Germi, R ;
Crance, JM ;
Garin, D ;
Guimet, J ;
Lortat-Jacob, H ;
Ruigrok, RWH ;
Zarski, JP ;
Drouet, E .
VIROLOGY, 2002, 292 (01) :162-168
[10]   A BHK-21 cell culture-adapted tick-borne encephalitis virus mutant is attenuated for neuroinvasiveness [J].
Goto, A ;
Hayasaka, D ;
Yoshii, K ;
Mizutani, T ;
Kariwa, H ;
Takashima, I .
VACCINE, 2003, 21 (25-26) :4043-4051