Abstract
To investigate the mechanism by which the polyomavirus large T antigen (T-Ag) promotes amplification of integrated viral sequences, we constructed a rat cell line, Hy2-ts5, carrying two different inserts of polyomavirus DNA. The first insert, designated the middle T (pmt) locus, was devised to analyze homologous recombination between two defective copies of pmt lying 3.3 kb apart on the same chromosome. Reconstitution of a functional pmt by spontaneous recombination occurred at a rate of about 2 x 10(-7) per cell generation. The second locus contained the polyomavirus large T (plt) gene carrying a temperature-sensitive mutation and producing a nonfunctional large T-Ag at 39 degrees C. A shift to the permissive temperature for as little as 24 h induced the production of a functional large T-Ag which, in turn, promoted homologous recombination in the pmt locus at a rate close to 1.0 per cell generation. The particularity of this system is that it allowed recombination products to be analyzed as early as a single cell doubling following the initial recombinational event. Amplification occurred by successive duplications of a discrete sequence in the viral insert. Unequal sister chromatid exchange was ruled out as the recombination mechanism promoted by large T-Ag. Instead, we proposed a model of nonconservative recombination involving mispairing between homologous sequences.
MeSH Terms
Animals
Antigens, Viral, Tumor/genetics
Blotting, Southern
Cell Line
DNA, Viral/genetics
Gene Amplification
Models, Genetic
Mutation
Polyomavirus/genetics
Rats
Recombination, Genetic
Temperature
Transformation, Genetic
Chemicals
Antigens, Viral, Tumor
DNA, Viral
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
St-Onge L
Department of Microbiology, Université de Sherbrooke, Quebec, Canada.
Bastin M
References (28)
28 references, click to expand
-
Studies on simian virus 40 excision from cellular chromosomes.
Cold Spring Harb Symp Quant Biol. 1979;43 Pt 2:709-19
PMID: 226315
-
Engineering herbicide tolerance in transgenic plants.
Science. 1986 Jul 25;233(4762):478-81
PMID: 17794571
-
Intrachromosomal recombination mediated by papovavirus large T antigens.
J Virol. 1990 Jun;64(6):2958-66
PMID: 2159556
-
Requirements for species-specific papovavirus DNA replication.
J Virol. 1989 Dec;63(12):5371-85
PMID: 2555562
-
Mutation in the polyomavirus genome that activates the properties of large T associated with neoplastic transformation.
J Virol. 1986 Jan;57(1):165-72
PMID: 3001342
-
High frequency targeting of genes to specific sites in the mammalian genome.
Cell. 1986 Feb 14;44(3):419-28
PMID: 3002636
-
Structure and expression of a tandem duplication of the Drosophila metallothionein gene.
Proc Natl Acad Sci U S A. 1986 Aug;83(16):6025-9
PMID: 3016735
-
Resolution of a polyomavirus-mouse hybrid replicon: viral function required for recombination.
J Virol. 1987 Mar;61(3):845-50
PMID: 3027410
-
Gene amplification in cultured cells.
J Biol Chem. 1988 May 5;263(13):5989-92
PMID: 3283115
-
DNA amplification in drug resistant cells and in tumours.
Cancer Surv. 1986;5(1):1-23
PMID: 3297310
-
Slipped-strand mispairing: a major mechanism for DNA sequence evolution.
Mol Biol Evol. 1987 May;4(3):203-21
PMID: 3328815
-
Polyoma large T can activate middle T expression by a hit-and-run mechanism.
Oncogene. 1988 Apr;2(4):379-86
PMID: 3362552
-
Extrachromosomal and chromosomal gene conversion in mammalian cells.
Mol Cell Biol. 1986 May;6(5):1608-14
PMID: 3537707
-
Amplification of an esterase gene is responsible for insecticide resistance in a California Culex mosquito.
Science. 1986 Aug 15;233(4765):778-80
PMID: 3755546
-
Simian virus 40 T antigen is required for viral excision from chromosomes.
Proc Natl Acad Sci U S A. 1984 Dec;81(23):7534-8
PMID: 6095304
-
Comparison of phosphorylation of two polyoma virus middle T antigens in vivo and in vitro.
J Virol. 1981 Oct;40(1):184-96
PMID: 6169848
-
Amplification of integrated viral DNA sequences in polyoma virus-transformed cells.
Proc Natl Acad Sci U S A. 1980 Jul;77(7):3850-4
PMID: 6253993
-
Transformation of mammalian cells to antibiotic resistance with a bacterial gene under control of the SV40 early region promoter.
J Mol Appl Genet. 1982;1(4):327-41
PMID: 6286831
-
Requirements for excision and amplification of integrated viral DNA molecules in polyoma virus-transformed cells.
J Virol. 1982 Aug;43(2):617-28
PMID: 6287035
-
Amplification and excision of integrated polyoma DNA sequences require a functional origin of replication.
Cell. 1984 Apr;36(4):943-9
PMID: 6323029
-
Construction and functional characterization of polyomavirus genomes that separately encode the three early proteins.
J Virol. 1984 Jul;51(1):170-80
PMID: 6328036
-
Gene amplification in cultured animal cells.
Cell. 1984 Jul;37(3):705-13
PMID: 6378386
-
Gene amplification.
Annu Rev Biochem. 1984;53:447-91
PMID: 6383198
-
Evidence for intrachromosomal gene conversion in cultured mouse cells.
Cell. 1983 Nov;35(1):157-65
PMID: 6578876
-
New views of the biochemistry of eucaryotic DNA replication revealed by aphidicolin, an unusual inhibitor of DNA polymerase alpha.
Cell. 1981 Mar;23(3):647-8
PMID: 6784928
-
ISOLATION OF TEMPERATURE-SENSITIVE MUTANTS OF POLYOMA VIRUS.
Virology. 1965 Apr;25:669-71
PMID: 14329143
-
Mutations of Bacteria from Virus Sensitivity to Virus Resistance.
Genetics. 1943 Nov;28(6):491-511
PMID: 17247100
-
Detection of specific sequences among DNA fragments separated by gel electrophoresis.
J Mol Biol. 1975 Nov 5;98(3):503-17
PMID: 1195397