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Purification and characterization of cMGF, a novel chicken myelomonocytic growth factor.
EMBO J. 1984 Dec 20;3(13):3191-7
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The transforming activity of the chicken c-myc gene can be potentiated by mutations.
Oncogene. 1987;1(4):415-22
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c-erbB activation in ALV-induced erythroblastosis: novel RNA processing and promoter insertion result in expression of an amino-truncated EGF receptor.
Cell. 1985 Jul;41(3):719-26
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Susceptibility to erbB-induced erythroblastosis is a dominant trait of 151 chickens.
J Virol. 1985 Sep;55(3):617-22
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Antibodies against platelet-derived growth factor inhibit acute transformation by simian sarcoma virus.
Nature. 1985 Oct 3-9;317(6036):438-40
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Activation of c-erbB in avian leukosis virus-induced erythroblastosis leads to the expression of a truncated EGF receptor kinase.
EMBO J. 1985 Dec 1;4(12):3179-82
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Rous-associated virus 1-induced erythroleukemic cells exhibit a weakly transformed phenotype in vitro and release c-erbB-containing retroviruses unable to transform fibroblasts.
J Virol. 1986 Mar;57(3):1127-38
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Monoclonal antibodies to novel erythroid differentiation antigens reveal specific effects of oncogenes on the leukaemic cell phenotype.
Leuk Res. 1986;10(3):257-72
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Analysis of the autophosphorylation activity of transformation defective mutants of avian erythroblastosis virus.
Virology. 1986 Apr 15;150(1):270-5
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v-erbA cooperates with sarcoma oncogenes in leukemic cell transformation.
Cell. 1986 May 9;45(3):349-56
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Mutagenesis of the avian erythroblastosis virus erbB coding region: an intact extracellular domain is not required for oncogenic transformation.
J Virol. 1986 Aug;59(2):525-30
PMID: 3016316
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Differences in sequences encoding the carboxyl-terminal domain of the epidermal growth factor receptor correlate with differences in the disease potential of viral erbB genes.
Proc Natl Acad Sci U S A. 1986 Aug;83(16):6053-7
PMID: 3016739
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The phenotypic characteristics of simian sarcoma virus-transformed human fibroblasts suggest that the v-sis gene product acts solely as a PDGF receptor agonist in cell transformation.
EMBO J. 1986 Jul;5(7):1535-41
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A single amino acid substitution in v-erbB confers a thermolabile phenotype to ts167 avian erythroblastosis virus-transformed erythroid cells.
Mol Cell Biol. 1986 May;6(5):1751-9
PMID: 2878364
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The c-erb-A protein is a high-affinity receptor for thyroid hormone.
Nature. 1986 Dec 18-31;324(6098):635-40
PMID: 2879242
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The c-erb-A gene encodes a thyroid hormone receptor.
Nature. 1986 Dec 18-31;324(6098):641-6
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Two types of target cells for transformation with avian myelocytomatosis virus.
Virology. 1973 Aug;54(2):398-413
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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
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Transformation parameters in chicken fibroblasts transformed by AEV and MC29 avian leukemia viruses.
Cell. 1978 Apr;13(4):751-60
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Defectiveness of avian erythroblastosis virus: synthesis of a 75K gag-related protein.
Virology. 1979 Jan 15;92(1):31-45
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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
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Molecular cloning of the avian erythroblastosis virus genome and recovery of oncogenic virus by transfection of chicken cells.
J Virol. 1980 Nov;36(2):575-85
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Hematopoietic cells transformed in vitro by REVT avian reticuloendotheliosis virus express characteristics of very immature lymphoid cells.
Virology. 1981 Dec;115(2):295-309
PMID: 6274086
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Hormone-dependent terminal differentiation in vitro of chicken erythroleukemia cells transformed by ts mutants of avian erythroblastosis virus.
Cell. 1982 Apr;28(4):907-19
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Target cells infected by avian erythroblastosis virus differentiate and become transformed.
Cell. 1982 Apr;28(4):921-9
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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
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Transformation of both erythroid and myeloid cells by E26, an avian leukemia virus that contains the myb gene.
Cell. 1982 Dec;31(3 Pt 2):643-53
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Transforming capacities of avian erythroblastosis virus mutants deleted in the erbA or erbB oncogenes.
Cell. 1983 Jan;32(1):227-38
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Identification and characterization of the avian erythroblastosis virus erbB gene product as a membrane glycoprotein.
Cell. 1983 Feb;32(2):579-88
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Activation of the cellular oncogene c-erbB by LTR insertion: molecular basis for induction of erythroblastosis by avian leukosis virus.
Cell. 1983 Jun;33(2):357-68
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Tumorigenic conversion of primary embryo fibroblasts requires at least two cooperating oncogenes.
Nature. 1983 Aug 18-24;304(5927):596-602
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A new avian erythroblastosis virus, AEV-H, carries erbB gene responsible for the induction of both erythroblastosis and sarcomas.
Cell. 1983 Aug;34(1):225-32
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The erbB gene of avian erythroblastosis virus is a member of the src gene family.
Cell. 1983 Nov;35(1):71-8
PMID: 6313229
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Site-specific mutagenesis of avian erythroblastosis virus: erb-B is required for oncogenicity.
Virology. 1983 Oct 15;130(1):155-78
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Growth factor-induced proliferation of human fibroblasts in serum-free culture depends on cell density and extracellular calcium concentration.
J Cell Physiol. 1984 Feb;118(2):203-10
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Close similarity of epidermal growth factor receptor and v-erb-B oncogene protein sequences.
Nature. 1984 Feb 9-15;307(5951):521-7
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Quail embryo fibroblasts transformed by four v-myc-containing virus isolates show enhanced proliferation but are non tumorigenic.
EMBO J. 1983;2(12):2385-9
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Temperature-sensitive mutants of avian erythroblastosis virus: surface expression of the erbB product correlates with transformation.
Cell. 1984 Apr;36(4):963-72
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Human epidermal growth factor receptor cDNA sequence and aberrant expression of the amplified gene in A431 epidermoid carcinoma cells.
Nature. 1984 May 31-Jun 6;309(5967):418-25
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Identification of a form of the avian erythroblastosis virus erb-B gene product at the cell surface.
Nature. 1984 May 31-Jun 6;309(5967):460-2
PMID: 6328316
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Subcellular localization of the v-erb-B protein, the product of a transforming gene of avian erythroblastosis virus.
Virology. 1984 Jun;135(2):356-68
PMID: 6330978
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Autophosphorylation sites on the epidermal growth factor receptor.
Nature. 1984 Oct 4-10;311(5985):483-5
PMID: 6090945
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src- and fps-containing avian sarcoma viruses transform chicken erythroid cells.
Proc Natl Acad Sci U S A. 1984 Nov;81(22):7122-6
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Protein phosphorylation at tyrosine is induced by the v-erbB gene product in vivo and in vitro.
Cell. 1985 Mar;40(3):609-18
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Cell transformation by a virus containing a molecularly constructed gag-erbB fused gene.
J Virol. 1987 May;61(5):1665-9
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Expression of the v-erbA oncogene in chicken embryo fibroblasts stimulates their proliferation in vitro and enhances tumor growth in vivo.
Cell. 1987 Jun 5;49(5):687-97
PMID: 2884040
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A single point mutation in erbA restores the erythroid transforming potential of a mutant avian erythroblastosis virus (AEV) defective in both erbA and erbB oncogenes.
EMBO J. 1987 Feb;6(2):375-82
PMID: 2884103
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Epidermal-growth-factor-dependent transformation by a human EGF receptor proto-oncogene.
Science. 1987 Dec 4;238(4832):1408-10
PMID: 3500513
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Overexpression of the human EGF receptor confers an EGF-dependent transformed phenotype to NIH 3T3 cells.
Cell. 1987 Dec 24;51(6):1063-70
PMID: 3500791
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Signal transduction through the EGF receptor transfected in IL-3-dependent hematopoietic cells.
Science. 1988 Feb 5;239(4840):628-31
PMID: 3257584
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Defective v-erbB genes can be complemented by v-erbA in erythroblast and fibroblast transformation.
Oncogene. 1987 May;1(2):167-73
PMID: 2830578
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v-erbA specifically suppresses transcription of the avian erythrocyte anion transporter (band 3) gene.
Cell. 1988 Jan 15;52(1):107-19
PMID: 2830979
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Common site of mutation in the erbB gene of avian erythroblastosis virus mutants that are temperature sensitive for transformation.
Oncogene Res. 1987 Aug;1(3):265-78
PMID: 2897102
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High-frequency transduction of c-erbB in avian leukosis virus-induced erythroblastosis.
J Virol. 1985 May;54(2):295-303
PMID: 2985798