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PMID: 6264118 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Characterization of the oncogene (erb) of avian erythroblastosis virus and its cellular progenitor.

Journal of virology ·Vol. 38 ·No. 2 ·1981-05-00 ·Pages 409-19

Saule S, Roussel M, Lagrou C, Stehelin D

Abstract

Avian erythroblastosis virus (AEV) induces primarily erythroblastosis when injected intravenously into susceptible chickens. In vitro, the hematopoietic target cells for transformation are the erythroblasts. Occasional sarcomas are also induced by intramuscular injection, and chicken or quail fibroblasts can be transformed in vitro. The transforming capacity of AEV was shown to be associated with the presence of a unique nucleotide sequence denoted erb in its genomic RNA. Using a simplified procedure, we prepared radioactive complementary DNA (cDNAaev) representative of the erb sequence at a high yield. Using a cDNAaev excess liquid hybridization technique adapted to defective retroviruses, we determined the complexity of the erb sequence to be 3,700 +/- 370 nucleotides. AEV-transformed erythroblasts, as well as fibroblasts, contained two polyadenylated viral mRNA species of 30 and 23S in similar high abundance (50 to 500 copies per cell). Both species were efficiently packaged into the virions. AEV-transformed erythroblasts contained additional high-molecular-weight mRNA species hybridizing with cDNAaev and cDNA5' but not with cDNA made to the helper leukosis virus used (cDNArep). The nature and the role, if any, of these bands remain unclear. The erb sequence had its counterpart in normal cellular DNA of all higher vertebrate species tested, including humans and fish (1 to 2 copies per haploid genome in the nonrepetitive fraction of the DNA). These cellular sequences (c-erb) were transcribed at low levels (1 to 2 RNA copies per cell) in chicken and quail fibroblasts, in which the two alleged domains of AEV-specific sequences corresponding to the 75,000- and 40,000-molecular-weight proteins seemed to be conserved phylogenetically and transcribed at similar low rates.

MeSH Terms
Alpharetrovirus/genetics Animals Avian Leukosis Virus/genetics Base Sequence Cell Transformation, Neoplastic Cell Transformation, Viral Chickens/genetics Erythroblasts Fibroblasts Genes, Viral Humans Nucleic Acid Hybridization RNA, Viral/genetics Transcription, Genetic Vertebrates/genetics
Chemicals
RNA, Viral
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Saule S
Roussel M
Lagrou C
Stehelin D
References (33)
33 references, click to expand
  1. Strain MC29 avian leukosis virus. Myelocytoma, endothelioma, and renal growths: pathomorphological and ultrastructural aspects.
    J Natl Cancer Inst. 1967 Mar;38(3):251-85 PMID: 4290185
  2. Moloney murine sarcoma proviral DNA is a transcriptional unit.
    Nature. 1980 Dec 25;288(5792):665-9 PMID: 6256637
  3. Virus-specific ribonucleic acid in cells producing rous sarcoma virus: detection and characterization.
    J Virol. 1972 Jun;9(6):891-902 PMID: 4338637
  4. Kinetic studies of gene frequency. II. Complexity of globin complementary DNA and its hybridization characteristics.
    J Mol Biol. 1974 Apr 25;84(4):555-68 PMID: 4135194
  5. Purification of DNA complementary to nucleotide sequences required for neoplastic transformation of fibroblasts by avian sarcoma viruses.
    J Mol Biol. 1976 Mar 5;101(3):349-65 PMID: 176368
  6. Evidence for the multiple oncogenic potential of cloned leukemia virus: in vitro and in vitro studies with avian erythroblastosis virus.
    Virology. 1976 Jun;71(2):423-33 PMID: 180661
  7. Efficeint transcription of RNA into DNA by avian sarcoma virus polymerase.
    Biochim Biophys Acta. 1976 Sep 6;442(3):324-30 PMID: 183818
  8. Purification of DNA complementary to the env gene of avian sarcoma virus and analysis of relationships among the env genes of avian leukosis-sarcoma viruses.
    J Virol. 1977 Feb;21(2):497-505 PMID: 189084
  9. Characterization of DNA complementary to nucleotide sequences at the 5'-terminus of the avian sarcoma virus genome.
    Virology. 1977 Jun 1;79(1):198-215 PMID: 194401
  10. Analysis of single- and double-stranded nucleic acids on polyacrylamide and agarose gels by using glyoxal and acridine orange.
    Proc Natl Acad Sci U S A. 1977 Nov;74(11):4835-8 PMID: 73185
  11. Method for detection of specific RNAs in agarose gels by transfer to diazobenzyloxymethyl-paper and hybridization with DNA probes.
    Proc Natl Acad Sci U S A. 1977 Dec;74(12):5350-4 PMID: 414220
  12. Avian myelocytomatosis and erythroblastosis viruses lack the transforming gene src of avian sarcoma viruses.
    Cell. 1978 Apr;13(4):745-50 PMID: 207438
  13. Genome organization of RNA tumor viruses. I. In vitro synthesis of full-genome-length single-stranded and double-stranded viral DNA transcripts.
    J Virol. 1978 Jun;26(3):615-29 PMID: 209213
  14. Temperature-sensitive mutant of avian erythroblastosis virus suggests a block of differentiation as mechanism of leukaemogenesis.
    Nature. 1978 Oct 12;275(5680):496-501 PMID: 211440
  15. Characterization of the env gene in avian oncoviruses by heteroduplex mapping.
    J Virol. 1978 Sep;27(3):667-76 PMID: 212588
  16. Identification of nucleotide sequences which may encode the oncogenic capacity of avian retrovirus MC29.
    J Virol. 1978 Nov;28(2):600-10 PMID: 214581
  17. Avian leukemia viruses: interaction with their target cells in vivo and in vitro.
    Biochim Biophys Acta. 1978 Nov 17;516(3):269-99 PMID: 215208
  18. Defectiveness of avian erythroblastosis virus: synthesis of a 75K gag-related protein.
    Virology. 1979 Jan 15;92(1):31-45 PMID: 217166
  19. Response of hemopoietic cells to avian acute leukemia viruses: effects on the differentiation of the target cells.
    Cell. 1979 Mar;16(3):627-38 PMID: 222465
  20. Virus-specific messenger RNAs in permissive cells infected by avian sarcoma virus.
    J Biol Chem. 1979 Aug 25;254(16):8015-22 PMID: 224042
  21. Avian erythroblastosis virus: transformation-specific sequences form a contiguous segment of 3.25 kb located in the middle of the 6-kb genome.
    Virology. 1979 Sep;97(2):366-77 PMID: 224587
  22. DNA and RNA from uninfected vertebrate cells contain nucleotide sequences related to the putative transforming gene of avian myelocytomatosis virus.
    J Virol. 1979 Aug;31(2):514-21 PMID: 225569
  23. Three new types of viral oncogene of cellular origin specific for haematopoietic cell transformation.
    Nature. 1979 Oct 11;281(5731):452-5 PMID: 226888
  24. Chicken hematopoietic cells transformed by seven strains of defective avian leukemia viruses display three distinct phenotypes of differentiation.
    Cell. 1979 Oct;18(2):375-90 PMID: 227607
  25. Transformation of mammalian cells by avian myelocytomatosis virus and avian erythroblastosis virus.
    Virology. 1979 Oct 30;98(2):461-5 PMID: 228482
  26. gag-Related polypeptides encoded by replication-defective avian oncoviruses.
    J Virol. 1979 Dec;32(3):749-61 PMID: 229264
  27. Transforming capacities and defectiveness of avian leukemia viruses OK10 and E 26.
    Virology. 1979 Dec;99(2):431-6 PMID: 229630
  28. Cell-free translation of avian erythroblastosis virus RNA yields two specific and distinct proteins with molecular weights of 75,000 and 40,000.
    Virology. 1980 Jan 30;100(2):475-83 PMID: 6243437
  29. In vitro translation of avian erythroblastosis virus RNA: identification of two major polypeptides.
    Virology. 1980 Jan 30;100(2):484-7 PMID: 6243438
  30. Cell-free translation of avian erythroblastosis virus RNA.
    J Virol. 1980 Apr;34(1):280-4 PMID: 6246260
  31. Three new types of viral oncogenes in defective avian leukemia viruses. I. Specific nucleotide sequences of cellular origin correlate with specific transformation.
    Cold Spring Harb Symp Quant Biol. 1980;44 Pt 2,:1215-23 PMID: 6253195
  32. Three new types of viral oncogenes in defective avian leukemia viruses. II. Biological, genetic, and immunochemical evidence.
    Cold Spring Harb Symp Quant Biol. 1980;44 Pt 2,:1225-34 PMID: 6253196
  33. A crude nuclease preparation suitable for use in DNA reassociation experiments.
    Biochim Biophys Acta. 1971 Jul 29;240(4):522-31 PMID: 5123563
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
1981-05-00
Pages
409-19
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC171172
Subset
IM
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