The production of recombinant infectious DI-particles of a murine coronavirus in the absence of helper virus

被引:145
作者
Bos, ECW
Luytjes, W
VanderMeulen, H
Koerten, HK
Spaan, WJM
机构
[1] LEIDEN STATE UNIV,DEPT VIROL,2300 AH LEIDEN,NETHERLANDS
[2] LEIDEN STATE UNIV,LAB ELECTRON MICROSCOPY,2300 AH LEIDEN,NETHERLANDS
关键词
D O I
10.1006/viro.1996.0165
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
We have studied the production and release of infectious DI-particles in vaccinia-T7-polymerase recombinant virus-infected L cells that were transfected with five different plasmids expressing the synthetic DI RNA MIDI-HD and the four structural proteins (M, N, S, and E) of the murine coronavirus MHV-A59. The DI cDNA contains the hepatitis delta ribozyme sequences to generate in the transfected cells a defined 3' end. In EM studies of transfected cells virus-like particles (VLP) were observed in vesicles. Release of the particles into the medium was studied by immunoprecipitations of proteins released into the culture supernatant Particle release was independent of S or N, but required M and E. Coexpression of E and M was sufficient for particle release. Coexpression of the structural proteins and the MIDI-HD RNA resulted in the production and release of infectious DI-particles. Infectivity of the DI-particles was determined by adding helper virus MHV-A59 to the medium containing the VLPs and using this mixture to infect new L cells. Intracellular RNA of several subsequent undiluted passages was isolated to detect the MIDI-HD RNA. Passage of the MIDI-HD RNA was dependent on the expression of the structural proteins of MHV-A59 in the transfected cells. In the absence of either E or M, MIDI-HD RNA could not be passaged to fresh L cells. We have thus developed a system in which we can produce coronavirus-like particles and an assay to test their infectivity. (C) 1996 Academic Press, Inc.
引用
收藏
页码:52 / 60
页数:9
相关论文
共 59 条
[1]   OLIGOMERIC REARRANGEMENT OF TICK-BORNE ENCEPHALITIS-VIRUS ENVELOPE PROTEINS INDUCED BY AN ACIDIC PH [J].
ALLISON, SL ;
SCHALICH, J ;
STIASNY, K ;
MANDL, CW ;
KUNZ, C ;
HEINZ, FX .
JOURNAL OF VIROLOGY, 1995, 69 (02) :695-700
[2]   MEMBRANE AND PHOSPHOLIPID BINDING BY MURINE CORONAVIRAL NUCLEOCAPSID N-PROTEIN [J].
ANDERSON, R ;
WONG, F .
VIROLOGY, 1993, 194 (01) :224-232
[3]   SEQUENCE AND TOPOLOGY OF A MODEL INTRACELLULAR MEMBRANE-PROTEIN, E1-GLYCOPROTEIN, FROM A CORONAVIRUS [J].
ARMSTRONG, J ;
NIEMANN, H ;
SMEEKENS, S ;
ROTTIER, P ;
WARREN, G .
NATURE, 1984, 308 (5961) :751-752
[4]   INTERACTIONS BETWEEN CORONAVIRUS NUCLEOCAPSID PROTEIN AND VIRAL RNAS - IMPLICATIONS FOR VIRAL TRANSCRIPTION [J].
BARIC, RS ;
NELSON, GW ;
FLEMING, JO ;
DEANS, RJ ;
KECK, JG ;
CASTEEL, N ;
STOHLMAN, SA .
JOURNAL OF VIROLOGY, 1988, 62 (11) :4280-4287
[5]  
BOS ECW, 1995, VIROLOGY, V214, P463
[6]  
BREDENBEEK P, 1990, THESIS U UTRECHT
[7]   A CIS-ACTING FUNCTION FOR THE CORONAVIRUS LEADER IN DEFECTIVE INTERFERING RNA REPLICATION [J].
CHANG, RY ;
HOFMANN, MA ;
SETHNA, PB ;
BRIAN, DA .
JOURNAL OF VIROLOGY, 1994, 68 (12) :8223-8231
[8]   MONOCLONAL-ANTIBODIES TO MURINE HEPATITIS VIRUS-4 (STRAIN-JHM) DEFINE THE VIRAL GLYCOPROTEIN RESPONSIBLE FOR ATTACHMENT AND CELL CELL-FUSION [J].
COLLINS, AR ;
KNOBLER, RL ;
POWELL, H ;
BUCHMEIER, MJ .
VIROLOGY, 1982, 119 (02) :358-371
[9]   PROCESSING AND EVOLUTION OF THE N-TERMINAL REGION OF THE ARTERIVIRUS REPLICASE ORF1A PROTEIN - IDENTIFICATION OF 2 PAPAINLIKE CYSTEINE PROTEASES [J].
DENBOON, JA ;
FAABERG, KS ;
MEULENBERG, JJM ;
WASSENAAR, ALM ;
PLAGEMANN, PGW ;
GORBALENYA, AE ;
SNIJDER, EJ .
JOURNAL OF VIROLOGY, 1995, 69 (07) :4500-4505
[10]   CLONING OF THE MOUSE HEPATITIS-VIRUS (MHV) RECEPTOR - EXPRESSION IN HUMAN AND HAMSTER-CELL LINES CONFERS SUSCEPTIBILITY TO MHV [J].
DVEKSLER, GS ;
PENSIERO, MN ;
CARDELLICHIO, CB ;
WILLIAMS, RK ;
JIANG, GS ;
HOLMES, KV ;
DIEFFENBACH, CW .
JOURNAL OF VIROLOGY, 1991, 65 (12) :6881-6891