Generation of a recombinant chimeric Newcastle disease virus vaccine that allows serological differentiation between vaccinated and infected animals

被引:59
作者
Peeters, BPH [1 ]
de Leeuw, OS [1 ]
Verstegen, I [1 ]
Koch, G [1 ]
Gielkens, ALJ [1 ]
机构
[1] ID Lelystad, Inst Anim Sci & Hlth, Dept Avian Virol, NL-8200 AB Lelystad, Netherlands
关键词
Newcastle disease vaccine; chimeric virus; hemagglutinin-neuraminidase;
D O I
10.1016/S0264-410X(00)00419-9
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Using a recently developed reverse genetics system, we have generated a recombinant Newcastle disease virus (NDV) vaccine in which the gene encoding the hemagglutinin-neuraminidase (HN) has been replaced by a hybrid HN gene consisting of the cytoplasmic domain, transmembrane region, and stalk region of HN of NDV, and the immunogenic globular domain of HN of avian paramyxovirus type 4 (APMV4). The objective was to generate a chimeric live vaccine that induces a protective immune response against NDV by eliciting neutralizing antibodies against the fusion (F) protein, but which can be differentiated from wild-type NDV on the basis of different antibodies elicited by their HN proteins. Pathogenicity tests in day-old chickens showed that the recombinant was non-virulent (intracerebral pathogenicity index [ICPI] = 0.00). A vaccination-challenge experiment in 4-week-old specific pathogen free chickens demonstrated that the recombinant was completely safe and was able to protect chickens from challenge with a lethal dose of virulent NDV. By using a secreted form of HN produced in Pichia pastoris, a test was developed that allowed serological differentiation between animals vaccinated with the recombinant vaccine and animals infected with NDV. These results demonstrate that genetically modified marker vaccines can be generated from small RNA viruses that lack non-essential genes. (C) 2001 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:1616 / 1627
页数:12
相关论文
共 65 条
[1]  
Alexander D. J., 1991, Diseases of poultry., P496
[2]  
Alexander D.J., 1989, LAB MANUAL ISOLATION, V3rd, P114
[3]   ISOLATION AND CHARACTERIZATION OF AN AVIAN MYOGENIC CELL-LINE [J].
ANTIN, PB ;
ORDAHL, CP .
DEVELOPMENTAL BIOLOGY, 1991, 143 (01) :111-121
[4]  
Beard C. W., 1984, Diseases of poultry, P452
[5]   A RECOMBINANT FOWLPOX VIRUS EXPRESSING THE HEMAGGLUTININ-NEURAMINIDASE GENE OF NEWCASTLE-DISEASE VIRUS (NDV) PROTECTS CHICKENS AGAINST CHALLENGE BY NDV [J].
BOURSNELL, MEG ;
GREEN, PF ;
SAMSON, ACR ;
CAMPBELL, JIA ;
DEUTER, A ;
PETERS, RW ;
MILLAR, NS ;
EMMERSON, PT ;
BINNS, MM .
VIROLOGY, 1990, 178 (01) :297-300
[6]   REGIONS ON THE HEMAGGLUTININ-NEURAMINIDASE PROTEINS OF HUMAN PARAINFLUENZA VIRUS TYPE-1 AND SENDAI VIRUS IMPORTANT FOR MEMBRANE-FUSION [J].
BOUSSE, T ;
TAKIMOTO, T ;
GORMAN, WL ;
TAKAHASHI, T ;
PORTNER, A .
VIROLOGY, 1994, 204 (02) :506-514
[7]   CONSTRUCTION OF INTERTYPIC CHIMERIC DENGUE VIRUSES BY SUBSTITUTION OF STRUCTURAL PROTEIN GENES [J].
BRAY, M ;
LAI, CJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (22) :10342-10346
[8]   Monkeys immunized with intertypic chimeric dengue viruses are protected against wild-type virus challenge [J].
Bray, M ;
Men, RH ;
Lai, CJ .
JOURNAL OF VIROLOGY, 1996, 70 (06) :4162-4166
[9]   Expression of bacteriophage T7 RNA polymerase in avian and mammalian cells by a recombinant fowlpox virus [J].
Britton, P ;
Green, P ;
Kottier, S ;
Mawditt, KL ;
Penzes, Z ;
Cavanagh, D ;
Skinner, MA .
JOURNAL OF GENERAL VIROLOGY, 1996, 77 :963-967
[10]   Chimeric bovine respiratory syncytial virus with glycoprotein gene substitutions from human respiratory syncytial virus (HRSV): Effects on host range and evaluation as a live-attenuated HRSV vaccine [J].
Buchholz, UJ ;
Granzow, H ;
Schuldt, K ;
Whitehead, SS ;
Murphy, BR ;
Collins, PL .
JOURNAL OF VIROLOGY, 2000, 74 (03) :1187-1199