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PMID: 2166825 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Functional elements of the steroid hormone-responsive promoter of mouse mammary tumor virus.

Journal of virology ·Vol. 64 ·No. 9 ·1990-09-00 ·Pages 4477-88

Toohey MG, Lee JW, Huang M, Peterson DO

Abstract

Transcription from the promoter of mouse mammary tumor virus is subject to induction by several classes of steroid hormones as well as to repression by a negative regulatory element present in the long terminal repeats of proviral DNA. In order to characterize the functional elements of the promoter that in some way must respond to these regulatory signals, a number of promoter mutations were constructed, including a set of linker-scanning mutations across the entire promoter region. Analysis of these mutated promoters with a transient-transfection assay defined at least three mutation-sensitive promoter elements that are required for both basal and hormone-induced transcription. One mutation-sensitive region contains a TATA element located at approximately position -30 with respect to the start of transcription. A second mutation-sensitive region contains two 10-base-pair direct repeats located between positions -60 and -38, within which are embedded three copies of octamer-related sequences; complete disruption of this region of the promoter leads to a more severe decrease in transcription than do any of the linker-scanning mutations, suggesting that the repeated sequences may be at least partially functionally redundant. Gel electrophoresis mobility shift assays were used to demonstrate specific binding of a nuclear protein to this region of the promoter. A third mutation-sensitive region contains a binding site for nuclear factor 1 (NF-1) located between positions -77 and -63. Site-directed mutations in the NF-1-binding site which increase the apparent affinity of NF-1 for the promoter in vitro do not decrease the hormone dependence of transcription, suggesting that transcriptional activation mediated by steroid hormone-receptor complexes cannot be explained by facilitation or stabilization of the interaction of promoter sequences with NF-1 and consistent with the idea that binding of NF-1 is not rate determining in transcription from the mouse mammary tumor virus promoter. None of the promoter mutations functionally separates basal from glucocorticoid-induced transcription, suggesting that hormone induction does not make the promoter independent of any of the DNA-binding factors required for its basal activity.

MeSH Terms
Animals Base Sequence CCAAT-Enhancer-Binding Proteins Chloramphenicol O-Acetyltransferase/genetics DNA, Superhelical/genetics,isolation & purification DNA, Viral/genetics DNA-Binding Proteins/metabolism Gene Expression Regulation, Viral Hormones/pharmacology L Cells/metabolism Mammary Tumor Virus, Mouse/genetics Mice Molecular Sequence Data Mutation NFI Transcription Factors Nuclear Proteins/metabolism Oligonucleotide Probes Plasmids Polymerase Chain Reaction Promoter Regions, Genetic/drug effects Proviruses/genetics Repetitive Sequences, Nucleic Acid Restriction Mapping Steroids/pharmacology Transcription Factors Transcription, Genetic Y-Box-Binding Protein 1
Chemicals
CCAAT-Enhancer-Binding Proteins DNA, Superhelical DNA, Viral DNA-Binding Proteins Hormones NFI Transcription Factors Nuclear Proteins Oligonucleotide Probes Steroids Transcription Factors Y-Box-Binding Protein 1 YBX1 protein, human Chloramphenicol O-Acetyltransferase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Toohey M G
Department of Biochemistry and Biophysics, Texas A&M University, College Station 77843.
Lee J W
Huang M
Peterson D O
References (71)
71 references, click to expand
  1. Cell-type specificity of immunoglobulin gene expression is regulated by at least three DNA sequence elements.
    Cell. 1985 Jul;41(3):885-97 PMID: 3924411
  2. Orientation-dependent transcriptional activator upstream of a human U2 snRNA gene.
    Mol Cell Biol. 1985 Jul;5(7):1560-70 PMID: 2410771
  3. Two distinct transcription factors bind to the HSV thymidine kinase promoter in vitro.
    Cell. 1985 Sep;42(2):559-72 PMID: 2992804
  4. Recognition site of nuclear factor I, a sequence-specific DNA-binding protein from HeLa cells that stimulates adenovirus DNA replication.
    EMBO J. 1985 Jun;4(6):1515-21 PMID: 4040852
  5. Interaction of a gene-specific transcription factor with the adenovirus major late promoter upstream of the TATA box region.
    Cell. 1985 Nov;43(1):165-75 PMID: 4075392
  6. A nuclear factor that binds to a conserved sequence motif in transcriptional control elements of immunoglobulin genes.
    Nature. 1986 Jan 9-15;319(6049):154-8 PMID: 3079885
  7. A sensitive and rapid gel retention assay for nuclear factor I and other DNA-binding proteins in crude nuclear extracts.
    Nucleic Acids Res. 1986 Feb 11;14(3):1303-17 PMID: 3513122
  8. The B-cell-specific Oct-2 protein contains POU box- and homeo box-type domains.
    Genes Dev. 1988 Dec;2(12A):1570-81 PMID: 3265124
  9. Fine structure genetic analysis of a beta-globin promoter.
    Science. 1986 May 2;232(4750):613-8 PMID: 3457470
  10. Human U2 small nuclear RNA genes contain an upstream enhancer.
    EMBO J. 1986 May;5(5):987-95 PMID: 3720730
  11. A lymphoid-specific protein binding to the octamer motif of immunoglobulin genes.
    Nature. 1986 Oct 16-22;323(6089):640-3 PMID: 3095662
  12. The hormone regulatory element of mouse mammary tumour virus mediates progesterone induction.
    EMBO J. 1986 Sep;5(9):2237-40 PMID: 3023063
  13. Distinct sequence elements involved in the glucocorticoid regulation of the mouse mammary tumor virus promoter identified by linker scanning mutagenesis.
    J Mol Biol. 1986 Aug 5;190(3):379-89 PMID: 3023641
  14. Expression of a large family of POU-domain regulatory genes in mammalian brain development.
    Nature. 1989 Jul 6;340(6228):35-41 PMID: 2739723
  15. DELETION OF THYMIDINE KINASE ACTIVITY FROM L CELLS RESISTANT TO BROMODEOXYURIDINE.
    Exp Cell Res. 1963 Aug;31:297-312 PMID: 14056989
  16. Early events in the stimulation of mammary tumor virus RNA synthesis by glucocorticoids. Novel assays of transcription rates.
    J Biol Chem. 1984 Jun 25;259(12):7416-20 PMID: 6330056
  17. Correct transcription of an immunoglobulin kappa gene requires an upstream fragment containing conserved sequence elements.
    Nature. 1984 Jul 5-11;310(5972):71-4 PMID: 6330567
  18. High level transient expression of a chloramphenicol acetyl transferase gene by DEAE-dextran mediated DNA transfection coupled with a dimethyl sulfoxide or glycerol shock treatment.
    Nucleic Acids Res. 1984 Jul 25;12(14):5707-17 PMID: 6589587
  19. Reversible and persistent changes in chromatin structure accompany activation of a glucocorticoid-dependent enhancer element.
    Cell. 1984 Aug;38(1):29-38 PMID: 6088072
  20. Glucocorticoid and progesterone receptors bind to the same sites in two hormonally regulated promoters.
    Nature. 1985 Feb 21-27;313(6004):706-9 PMID: 2983219
  21. A cellular DNA-binding protein that activates eukaryotic transcription and DNA replication.
    Cell. 1987 Jan 16;48(1):79-89 PMID: 3024847
  22. Multiple hormone-inducible enhancers as mediators of differential transcription.
    Mol Cell Biol. 1986 Dec;6(12):4526-38 PMID: 3025659
  23. Steroid-dependent interaction of transcription factors with the inducible promoter of mouse mammary tumor virus in vivo.
    Cell. 1987 Jan 30;48(2):261-70 PMID: 3026639
  24. Functional elements of the human U1 RNA promoter. Identification of five separate regions required for efficient transcription and template competition.
    J Biol Chem. 1987 Feb 5;262(4):1795-803 PMID: 3805053
  25. The immunoglobulin octanucleotide: independent activity and selective interaction with enhancers.
    Science. 1987 Mar 20;235(4795):1498-501 PMID: 3029871
  26. The hormone response element of the mouse mammary tumour virus DNA mediates the progestin and androgen induction of transcription in the proviral long terminal repeat region.
    EMBO J. 1987 Feb;6(2):363-8 PMID: 3034586
  27. Context-dependent gene expression: cis-acting negative effects of specific procaryotic plasmid sequences on eucaryotic genes.
    Mol Cell Biol. 1987 Apr;7(4):1563-7 PMID: 3037330
  28. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding.
    Anal Biochem. 1976 May 7;72:248-54 PMID: 942051
  29. DNA sequencing with chain-terminating inhibitors.
    Proc Natl Acad Sci U S A. 1977 Dec;74(12):5463-7 PMID: 271968
  30. Dexamethasone-mediated induction of mouse mammary tumor virus RNA: a system for studying glucocorticoid action.
    Cell. 1975 Nov;6(3):299-305 PMID: 212202
  31. A rapid alkaline extraction procedure for screening recombinant plasmid DNA.
    Nucleic Acids Res. 1979 Nov 24;7(6):1513-23 PMID: 388356
  32. A gel electrophoresis method for quantifying the binding of proteins to specific DNA regions: application to components of the Escherichia coli lactose operon regulatory system.
    Nucleic Acids Res. 1981 Jul 10;9(13):3047-60 PMID: 6269071
  33. Equilibria and kinetics of lac repressor-operator interactions by polyacrylamide gel electrophoresis.
    Nucleic Acids Res. 1981 Dec 11;9(23):6505-25 PMID: 6275366
  34. Transcriptional control signals of a eukaryotic protein-coding gene.
    Science. 1982 Jul 23;217(4557):316-24 PMID: 6283634
  35. Purified glucocorticoid receptor-hormone complex from rat liver cytosol binds specifically to cloned mouse mammary tumor virus long terminal repeats in vitro.
    Proc Natl Acad Sci U S A. 1982 Sep;79(17):5157-61 PMID: 6291027
  36. Subfragments of the large terminal repeat cause glucocorticoid-responsive expression of mouse mammary tumor virus and of an adjacent gene.
    Proc Natl Acad Sci U S A. 1983 Jun;80(12):3637-41 PMID: 6304728
  37. Eukaryotic gene transcription with purified components.
    Methods Enzymol. 1983;101:582-98 PMID: 6888276
  38. The glucocorticoid receptor binds to defined nucleotide sequences near the promoter of mouse mammary tumour virus.
    Nature. 1983 Aug 25-31;304(5928):749-52 PMID: 6310405
  39. A small region of the mouse mammary tumor virus long terminal repeat confers glucocorticoid hormone regulation on a linked heterologous gene.
    Proc Natl Acad Sci U S A. 1983 Oct;80(19):5866-70 PMID: 6310597
  40. Sequence-specific binding of glucocorticoid receptor to MTV DNA at sites within and upstream of the transcribed region.
    Cell. 1983 Dec;35(2 Pt 1):381-92 PMID: 6317184
  41. Structure of the 5' ends of immunoglobulin genes: a novel conserved sequence.
    Proc Natl Acad Sci U S A. 1984 May;81(9):2650-4 PMID: 6425835
  42. The distal transcription signals of the herpesvirus tk gene share a common hexanucleotide control sequence.
    Cell. 1984 May;37(1):253-62 PMID: 6233005
  43. Glucocorticoid receptors recognize DNA sequences in and around murine mammary tumour virus DNA.
    EMBO J. 1982;1(12):1613-9 PMID: 6327283
  44. Functional analysis of the steroid hormone control region of mouse mammary tumor virus.
    Nucleic Acids Res. 1984 May 25;12(10):4191-206 PMID: 6328415
  45. Contacts between hormone receptor and DNA double helix within a glucocorticoid regulatory element of mouse mammary tumor virus.
    Proc Natl Acad Sci U S A. 1984 May;81(10):3029-33 PMID: 6328488
  46. Interaction of the TGGCA-binding protein with upstream sequences is required for efficient transcription of mouse mammary tumor virus.
    EMBO J. 1987 May;6(5):1355-60 PMID: 3038519
  47. A common octamer motif binding protein is involved in the transcription of U6 snRNA by RNA polymerase III and U2 snRNA by RNA polymerase II.
    Cell. 1987 Oct 9;51(1):71-9 PMID: 3652209
  48. Transcriptional repression of a hormone-responsive promoter.
    Nucleic Acids Res. 1987 Sep 11;15(17):6973-89 PMID: 2821488
  49. Purification and characterization of OTF-1, a transcription factor regulating cell cycle expression of a human histone H2b gene.
    Cell. 1987 Dec 4;51(5):773-81 PMID: 3677172
  50. Identification and purification of a human lymphoid-specific octamer-binding protein (OTF-2) that activates transcription of an immunoglobulin promoter in vitro.
    Cell. 1987 Dec 4;51(5):783-93 PMID: 3119226
  51. A 100-kD HeLa cell octamer binding protein (OBP100) interacts differently with two separate octamer-related sequences within the SV40 enhancer.
    Genes Dev. 1987 Dec;1(10):1147-60 PMID: 2828167
  52. Rapid and efficient site-specific mutagenesis without phenotypic selection.
    Methods Enzymol. 1987;154:367-82 PMID: 3323813
  53. Specific synthesis of DNA in vitro via a polymerase-catalyzed chain reaction.
    Methods Enzymol. 1987;155:335-50 PMID: 3431465
  54. Binding of multiple factors to the MMTV promoter in crude and fractionated nuclear extracts.
    Nucleic Acids Res. 1988 Jan 25;16(2):609-28 PMID: 2829133
  55. A transcriptionally defective long terminal repeat within an endogenous copy of mouse mammary tumor virus proviral DNA.
    J Virol. 1988 Jul;62(7):2394-402 PMID: 2836622
  56. A quantitative analysis of nuclear factor I/DNA interactions.
    Nucleic Acids Res. 1988 May 25;16(10):4419-35 PMID: 3380685
  57. Function of a yeast TATA element-binding protein in a mammalian transcription system.
    Nature. 1988 Jul 7;334(6177):37-42 PMID: 3290687
  58. DNA sequences outside the receptor-binding sites differently modulate the responsiveness of the mouse mammary tumour virus promoter to various steroid hormones.
    EMBO J. 1988 May;7(5):1403-10 PMID: 2842149
  59. Transcription factor OTF-1 is functionally identical to the DNA replication factor NF-III.
    Science. 1988 Sep 2;241(4870):1210-3 PMID: 3413485
  60. Factors involved in specific transcription by mammalian RNA polymerase II: purification, genetic specificity, and TATA box-promoter interactions of TFIID.
    Mol Cell Biol. 1988 Oct;8(10):4028-40 PMID: 3185540
  61. The POU domain: a large conserved region in the mammalian pit-1, oct-1, oct-2, and Caenorhabditis elegans unc-86 gene products.
    Genes Dev. 1988 Dec;2(12A):1513-6 PMID: 3215510
  62. The ubiquitous octamer-binding protein Oct-1 contains a POU domain with a homeo box subdomain.
    Genes Dev. 1988 Dec;2(12A):1582-99 PMID: 2905684
  63. Gene regulation by steroid hormones.
    Cell. 1989 Feb 10;56(3):335-44 PMID: 2644044
  64. Negative regulation of transcription in vitro by a glucocorticoid response element is mediated by a trans-acting factor.
    Mol Cell Biol. 1988 Sep;8(9):3872-81 PMID: 2851730
  65. Dual function of a nuclear factor I binding site in MMTV transcription regulation.
    Nucleic Acids Res. 1989 Apr 25;17(8):3065-78 PMID: 2542892
  66. Hormonal response region in the mouse mammary tumor virus long terminal repeat can be dissociated from the proviral promoter and has enhancer properties.
    Proc Natl Acad Sci U S A. 1985 Feb;82(4):1020-4 PMID: 2983325
  67. Transcription cell type specificity is conferred by an immunoglobulin VH gene promoter that includes a functional consensus sequence.
    Cell. 1985 Jun;41(2):479-87 PMID: 3921262
  68. Supercoil sequencing: a fast and simple method for sequencing plasmid DNA.
    DNA. 1985 Apr;4(2):165-70 PMID: 3996185
  69. Alterations in chromatin structure associated with glucocorticoid-induced expression of endogenous mouse mammary tumor virus genes.
    Mol Cell Biol. 1985 May;5(5):1104-10 PMID: 2987676
  70. Site-specific DNA binding of nuclear factor I: analyses of cellular binding sites.
    Mol Cell Biol. 1985 May;5(5):964-71 PMID: 4039788
  71. The TGGCA protein binds to the MMTV-LTR, the adenovirus origin of replication, and the BK virus enhancer.
    Nucleic Acids Res. 1985 Mar 25;13(6):2045-61 PMID: 2987840
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
1990-09-00
Pages
4477-88
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC247918
Subset
IM
Grants
NCI NIH HHS · CA32695 · United States
NCI NIH HHS · CA48041 · United States
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