Mutation in the Glycosylated Gag Protein of Murine Leukemia Virus Results in Reduced In Vivo Infectivity and a Novel Defect in Viral Budding or Release
Open Access
- 15 April 2007
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 81 (8) , 3685-3692
- https://doi.org/10.1128/jvi.01538-06
Abstract
All gammaretroviruses, including murine leukemia viruses (MuLVs), feline leukemia viruses, and gibbon-ape leukemia virus, encode an alternate, glycosylated form of Gag polyprotein (glyco-Gag or gPr80gag) in addition to the polyprotein precursor of the viral capsid proteins (Pr65gag). gPr80gag is translated from an upstream in-frame CUG initiation codon, in contrast to the AUG codon used for Pr65gag. The role of glyco-Gag in MuLV replication has been unclear, since gPr80gag-negative Moloney MuLV (M-MuLV) mutants are replication competent in vitro and pathogenic in vivo. However, reversion to the wild type is frequently observed in vivo. In these experiments, in vivo inoculation of a gPr80gag mutant, Ab-X-M-MuLV, showed substantially lower (2 log) initial infectivity in newborn NIH Swiss mice than that of wild-type virus, and revertants to the wild type could be detected by PCR cloning and DNA sequencing as early as 15 days postinfection. Atomic force microscopy of Ab-X-M-MuLV-infected producer cells or of the PA317 amphotropic MuLV-based vector packaging line (also gPr80gag negative) revealed the presence of tube-like viral structures on the cell surface. In contrast, wild-type virus-infected cells showed the typical spherical, 145-nm particles observed previously. Expression of gPr80gag in PA317 cells converted the tube-like structures to typical spherical particles. PA317 cells expressing gPr80gag produced 5- to 10-fold more infectious vector or viral particles as well. Metabolic labeling studies indicated that this reflected enhanced virus particle release rather than increased viral protein synthesis. These results indicate that gPr80gag is important for M-MuLV replication in vivo and in vitro and that the protein may be involved in a late step in viral budding or release.Keywords
This publication has 58 references indexed in Scilit:
- Atomic Force Microscopy Investigation of Isolated Virions of Murine Leukemia VirusJournal of Virology, 2005
- Atomic Force Microscopy Investigation of Fibroblasts Infected withWild-Type and Mutant Murine Leukemia Virus (MuLV)Biophysical Journal, 2002
- N-Terminal Cleavage Fragment of Glycosylated Gag Is Incorporated into Murine Oncornavirus ParticlesJournal of Virology, 2001
- Recovery of glycosylatedgag virus from mice infected with a glycosylatedgag-negative mutant of moloney murine leukemia virusJournal of Biomedical Science, 1994
- CUG initiation codon used for the synthesis of a cell surface antigen coded by the murine leukemia virusJournal of Molecular Biology, 1989
- Mutants of murine leukemia viruses and retroviral replicationBiochimica et Biophysica Acta (BBA) - Reviews on Cancer, 1987
- Construction of a retrovirus packaging mutant and its use to produce helper-free defective retrovirusCell, 1983
- Monospecific immunoprecipitation of murine leukemia virus polyribosomes: Identification of p30 protein-specific menssenger RNACell, 1976
- A core polyprotein of murine leukemia virus on the surface of mouse leukemia cellsCell, 1976
- Amino terminal sequences of mammalian Type C RNA tumor virus group-specific antigensBiochemical and Biophysical Research Communications, 1972