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J Virol. 1991 May;65(5):2525-32
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Endogenous avian retroviruses contain deficient promoter and leader sequences.
Proc Natl Acad Sci U S A. 1983 May;80(10):2946-50
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Expression of genes encoding the transcription factor SRF during early development of Xenopus laevis: identification of a CArG box-binding activity as SRF.
EMBO J. 1991 Apr;10(4):933-40
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A family of muscle gene promoter element (CArG) binding activities in Xenopus embryos: CArG/SRE discrimination and distribution during myogenesis.
Nucleic Acids Res. 1991 May 25;19(10):2669-75
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The inner core of the serum response element mediates both the rapid induction and subsequent repression of c-fos transcription following serum stimulation.
Genes Dev. 1990 Feb;4(2):255-68
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Identification of a third protein factor which binds to the Rous sarcoma virus LTR enhancer: possible homology with the serum response factor.
Virology. 1990 Jan;174(1):204-16
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Serum and v-src increase the level of a CCAAT-binding factor required for transcription from a retroviral long terminal repeat.
Genes Dev. 1990 Feb;4(2):243-54
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Transcriptional activity of the Rous sarcoma virus long terminal repeat correlates with binding of a factor to an upstream CCAAT box in vitro.
Virology. 1990 Jul;177(1):33-43
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Rous sarcoma virus enhancer factor I is a ubiquitous CCAAT transcription factor highly related to CBF and NF-Y.
J Biol Chem. 1990 Dec 25;265(36):22243-54
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Transient accumulation of c-fos RNA following serum stimulation requires a conserved 5' element and c-fos 3' sequences.
Cell. 1985 Oct;42(3):889-902
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The ability of a ternary complex to form over the serum response element correlates with serum inducibility of the human c-fos promoter.
Cell. 1989 Feb 24;56(4):563-72
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Cross-binding of factors to functionally different promoter elements in c-fos and skeletal actin genes.
Mol Cell Biol. 1989 May;9(5):2191-201
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Two distinct cellular phosphoproteins bind to the c-fos serum response element.
EMBO J. 1989 Jun;8(6):1785-92
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Muscle-specific (CArG) and serum-responsive (SRE) promoter elements are functionally interchangeable in Xenopus embryos and mouse fibroblasts.
Development. 1989 May;106(1):67-78
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Avian retroviral long terminal repeats bind CCAAT/enhancer-binding protein.
Mol Cell Biol. 1989 Mar;9(3):1155-64
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Negative regulation of serum-responsive enhancer elements.
Nature. 1989 Jul 6;340(6228):64-6
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Identification of multiple proteins that interact with functional regions of the human cardiac alpha-actin promoter.
Mol Cell Biol. 1989 Aug;9(8):3269-83
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Identification of three sequence-specific DNA-binding proteins which interact with the Rous sarcoma virus enhancer and upstream promoter elements.
J Virol. 1988 Jun;62(6):2186-90
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Enhancers: mechanisms of action and cell specificity.
Annu Rev Cell Biol. 1988;4:127-53
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Nucleotide sequence and expression of the human skeletal alpha-actin gene: evolution of functional regulatory domains.
Genomics. 1988 Nov;3(4):323-36
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Functional analysis of the transcription control region located within the avian retroviral long terminal repeat.
Mol Cell Biol. 1985 Mar;5(3):438-47
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Multiple protein-binding sites in the 5'-flanking region regulate c-fos expression.
Mol Cell Biol. 1986 Dec;6(12):4305-16
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Characterization of Rous sarcoma virus sequences essential for viral gene expression.
J Virol. 1987 Apr;61(4):1171-9
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Identification and purification of a polypeptide that binds to the c-fos serum response element.
EMBO J. 1987 Sep;6(9):2711-7
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Purification of intercalator-released p67, a polypeptide that interacts specifically with the c-fos serum response element.
Nucleic Acids Res. 1987 Dec 23;15(24):10145-58
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Mutation of the c-fos gene dyad symmetry element inhibits serum inducibility of transcription in vivo and the nuclear regulatory factor binding in vitro.
Mol Cell Biol. 1987 Mar;7(3):1217-25
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Xenopus cytoskeletal actin and human c-fos gene promoters share a conserved protein-binding site.
EMBO J. 1987 Mar;6(3):667-73
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Two cell lines from lymphomas of Marek's disease.
Biken J. 1974 Sep;17(3):105-16
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Identification of a functional promoter in the long terminal repeat of Rous sarcoma virus.
Cell. 1980 Dec;22(3):787-97
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Nucleotide sequence of acceptor site and termini of integrated avian endogenous provirus ev1: integration creates a 6 bp repeat of host DNA.
Cell. 1981 Jan;23(1):155-64
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Multiple arrangements of viral DNA and an activated host oncogene in bursal lymphomas.
Nature. 1982 Jan 21;295(5846):209-14
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The Rous sarcoma virus long terminal repeat is a strong promoter when introduced into a variety of eukaryotic cells by DNA-mediated transfection.
Proc Natl Acad Sci U S A. 1982 Nov;79(22):6777-81
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Nucleotide sequence of the long terminal repeat and flanking cellular sequences of avian endogenous retrovirus ev-2: variation in Rous-associated virus-0 expression cannot be explained by differences in primary sequence.
J Virol. 1983 Feb;45(2):868-71
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Localization of active promoters for eucaryotic RNA polymerase II in the long terminal repeat of avian sarcoma virus DNA.
Mol Cell Biol. 1983 May;3(5):811-8
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Identification of transcriptional elements within the long terminal repeat of Rous sarcoma virus.
Mol Cell Biol. 1983 Oct;3(10):1834-45
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Accurate transcription initiation by RNA polymerase II in a soluble extract from isolated mammalian nuclei.
Nucleic Acids Res. 1983 Mar 11;11(5):1475-89
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Contacts between Escherichia coli RNA polymerase and an early promoter of phage T7.
Proc Natl Acad Sci U S A. 1980 Jan;77(1):122-6
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Tissue-specific lability and expression of avian leukosis virus long terminal repeat enhancer-binding proteins.
Mol Cell Biol. 1989 Dec;9(12):5660-8
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The sarcomeric actin CArG-binding factor is indistinguishable from the c-fos serum response factor.
Mol Cell Biol. 1989 Feb;9(2):515-22
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The CArG promoter sequence is necessary for muscle-specific transcription of the cardiac actin gene in Xenopus embryos.
EMBO J. 1989 Apr;8(4):1153-61
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Duplicated CArG box domains have positive and mutually dependent regulatory roles in expression of the human alpha-cardiac actin gene.
Mol Cell Biol. 1987 Aug;7(8):2803-13
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Lability of leukosis virus enhancer-binding proteins in avian hematopoeitic cells.
J Virol. 1988 Aug;62(8):2728-35
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Transcriptional activity of avian retroviral long terminal repeats directly correlates with enhancer activity.
J Virol. 1985 Feb;53(2):515-21
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Enhancer activity correlates with the oncogenic potential of avian retroviruses.
EMBO J. 1985 Apr;4(4):949-56
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At least two nuclear proteins bind specifically to the Rous sarcoma virus long terminal repeat enhancer.
Mol Cell Biol. 1987 Feb;7(2):787-98
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Purification of the c-fos enhancer-binding protein.
Mol Cell Biol. 1987 Oct;7(10):3482-9
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Identification of a protein-binding site that mediates transcriptional response of the c-fos gene to serum factors.
Cell. 1986 Aug 15;46(4):567-74
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Transcription of three c-myc exons is enhanced in chicken bursal lymphoma cell lines.
Proc Natl Acad Sci U S A. 1985 Jan;82(1):53-7
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Multiple enhancer domains in the 3' terminus of the Prague strain of Rous sarcoma virus.
Nucleic Acids Res. 1984 Aug 24;12(16):6427-42
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Activation of a cellular onc gene by promoter insertion in ALV-induced lymphoid leukosis.
Nature. 1981 Apr 9;290(5806):475-80
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Sequence of the long terminal repeat and adjacent segments of the endogenous avian virus Rous-associated virus 0.
J Virol. 1982 Jul;43(1):191-200
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Nucleotide sequence of Rous sarcoma virus.
Cell. 1983 Mar;32(3):853-69
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Location and function of retroviral and SV40 sequences that enhance biochemical transformation after microinjection of DNA.
Cell. 1983 Jul;33(3):705-16
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Isolation and characterization of a cDNA clone for the CCAAT transcription factor EFIA reveals a novel structural motif.
J Biol Chem. 1990 Dec 25;265(36):22143-52
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