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PMID: 8254719 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Activation of the human immunodeficiency virus type 1 long terminal repeat by transforming mutants of human p53.

Journal of virology ·Vol. 68 ·No. 1 ·1994-01-00 ·Pages 103-10

Subler MA, Martin DW, Deb S

Abstract

We have studied the effects of human wild-type and mutant p53s on the long terminal repeat (LTR) promoter of human immunodeficiency virus type 1 (HIV). HeLa cells were cotransfected with a wild-type or mutant p53 expression plasmid and a plasmid containing a chloramphenicol acetyltransferase reporter gene under HIV LTR promoter control. As expected, expression of wild-type p53 inhibited promoter function. Expression of a p53 mutated at any one of the four amino acid positions 175, 248, 273, and 281 correlated with a significant increase of the HIV promoter activity. The HIV LTR was also significantly activated in Saos-2 cells that do not express endogenous p53. This finding suggests a gain-of-transactivation function by mutation of the p53 gene. Cotransfection of wild-type and mutant p53-281G expression plasmids indicated that either the wild type or the mutant was dominant in inhibiting or enhancing promoter activity, respectively, when transfected in excess of the other. Transfection experiments showed transactivation even when the Sp1, NF-kappa B, and TATA sites in the LTR were individually mutated. Synthetic minimal promoter constructs containing two Sp1 sites or two NF-kappa B sites or an ATF site are also significantly activated by the mutant p53-281G. Thus, the mutant protein may activate transcription through interaction with either a general transcription factor or a common factor that bridges the basal transcription machinery and the transcription factors Sp1, NF-kappa B, and ATF.

Related Genes
p53
MeSH Terms
Activating Transcription Factors Base Sequence Binding Sites/genetics Blood Proteins/metabolism DNA Mutational Analysis DNA-Binding Proteins/metabolism Genes, Reporter Genes, p53 HIV Long Terminal Repeat/genetics HIV-1/genetics HeLa Cells Humans Molecular Sequence Data NF-kappa B/metabolism Promoter Regions, Genetic/genetics Sp1 Transcription Factor/metabolism TATA-Box Binding Protein Transcription Factors/metabolism Transcriptional Activation/drug effects Transfection Transformation, Genetic Tumor Cells, Cultured Tumor Suppressor Protein p53/genetics,pharmacology
Chemicals
Activating Transcription Factors Blood Proteins DNA-Binding Proteins NF-kappa B Sp1 Transcription Factor TATA-Box Binding Protein Transcription Factors Tumor Suppressor Protein p53
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Subler M A
Department of Microbiology, University of Texas Health Science Center, San Antonio 78284.
Martin D W
Deb S
References (93)
93 references, click to expand
  1. Activation of the HIV-1 LTR by T cell mitogens and the trans-activator protein of HTLV-I.
    Science. 1987 Dec 11;238(4833):1575-8 PMID: 2825351
  2. Alternative mechanisms for activation of human immunodeficiency virus enhancer in T cells.
    Science. 1988 Mar 11;239(4845):1299-302 PMID: 2830675
  3. Mutation is required to activate the p53 gene for cooperation with the ras oncogene and transformation.
    J Virol. 1989 Feb;63(2):739-46 PMID: 2642977
  4. The murine p53 protein blocks replication of SV40 DNA in vitro by inhibiting the initiation functions of SV40 large T antigen.
    Cell. 1989 May 5;57(3):379-92 PMID: 2541911
  5. Identification of a region within the human immunodeficiency virus type 1 long terminal repeat that is essential for transactivation by the hepatitis B virus gene X.
    J Virol. 1989 Jun;63(6):2857-60 PMID: 2724417
  6. The p53 proto-oncogene can act as a suppressor of transformation.
    Cell. 1989 Jun 30;57(7):1083-93 PMID: 2525423
  7. Tumor necrosis factor alpha activates human immunodeficiency virus type 1 through induction of nuclear factor binding to the NF-kappa B sites in the long terminal repeat.
    Proc Natl Acad Sci U S A. 1989 Aug;86(15):5974-8 PMID: 2762307
  8. Multiple transcriptional regulatory domains in the human immunodeficiency virus type 1 long terminal repeat are involved in basal and E1A/E1B-induced promoter activity.
    J Virol. 1989 Nov;63(11):4616-25 PMID: 2529378
  9. Wild-type p53 can inhibit oncogene-mediated focus formation.
    Proc Natl Acad Sci U S A. 1989 Nov;86(22):8763-7 PMID: 2530586
  10. The immunopathogenesis of HIV infection.
    Adv Immunol. 1989;47:377-431 PMID: 2573256
  11. Mutations in the p53 gene occur in diverse human tumour types.
    Nature. 1989 Dec 7;342(6250):705-8 PMID: 2531845
  12. Role of opportunistic viral infections in AIDS.
    AIDS. 1990 Jan;4(1):1-10 PMID: 2180434
  13. The Epstein-Barr virus BRLF1 immediate-early gene product transactivates the human immunodeficiency virus type 1 long terminal repeat by a mechanism which is enhancer independent.
    J Virol. 1990 Apr;64(4):1817-20 PMID: 2157062
  14. Association of human papillomavirus types 16 and 18 E6 proteins with p53.
    Science. 1990 Apr 6;248(4951):76-9 PMID: 2157286
  15. Expression from the HIV-LTR is stimulated by glucocorticoids and pregnancy.
    AIDS Res Hum Retroviruses. 1990 Apr;6(4):553-60 PMID: 2340206
  16. A genetic model for colorectal tumorigenesis.
    Cell. 1990 Jun 1;61(5):759-67 PMID: 2188735
  17. Human p53 is phosphorylated by p60-cdc2 and cyclin B-cdc2.
    Proc Natl Acad Sci U S A. 1990 Jun;87(12):4766-70 PMID: 2141171
  18. p53 interacts with p34cdc2 in mammalian cells: implications for cell cycle control and oncogenesis.
    Oncogene. 1990 Jun;5(6):795-81 PMID: 2141683
  19. Mechanism of transcriptional activation by Sp1: evidence for coactivators.
    Cell. 1990 Jun 29;61(7):1187-97 PMID: 2194667
  20. Evidence for interaction of different eukaryotic transcriptional activators with distinct cellular targets.
    Nature. 1990 Jul 12;346(6280):147-52 PMID: 2142255
  21. Structural aspects of the p53 protein in relation to gene evolution.
    Oncogene. 1990 Jul;5(7):945-52 PMID: 2142762
  22. Conditional inhibition of transformation and of cell proliferation by a temperature-sensitive mutant of p53.
    Cell. 1990 Aug 24;62(4):671-80 PMID: 2143698
  23. p53 is associated with p34cdc2 in transformed cells.
    EMBO J. 1990 Sep;9(9):2885-9 PMID: 2167834
  24. Suppression of human colorectal carcinoma cell growth by wild-type p53.
    Science. 1990 Aug 24;249(4971):912-5 PMID: 2144057
  25. Presence of a potent transcription activating sequence in the p53 protein.
    Science. 1990 Aug 31;249(4972):1046-9 PMID: 2144363
  26. Transcriptional activation by wild-type but not transforming mutants of the p53 anti-oncogene.
    Science. 1990 Aug 31;249(4972):1049-51 PMID: 2144364
  27. The p53 tumour suppressor protein is phosphorylated at serine 389 by casein kinase II.
    EMBO J. 1990 Oct;9(10):3253-60 PMID: 2145148
  28. p53 functions as a cell cycle control protein in osteosarcomas.
    Mol Cell Biol. 1990 Nov;10(11):5772-81 PMID: 2233717
  29. Myb protein binds to human immunodeficiency virus 1 long terminal repeat (LTR) sequences and transactivates LTR-mediated transcription.
    Proc Natl Acad Sci U S A. 1990 Oct;87(20):8090-4 PMID: 2236022
  30. Wild-type, but not mutant, human p53 proteins inhibit the replication activities of simian virus 40 large tumor antigen.
    Proc Natl Acad Sci U S A. 1990 Dec;87(23):9275-9 PMID: 2174557
  31. Morphine-induced transactivation of HIV-1 LTR in human neuroblastoma cells.
    AIDS Res Hum Retroviruses. 1990 Oct;6(10):1163-8 PMID: 2252636
  32. Cancer. A deadly inheritance.
    Nature. 1990 Dec 20-27;348(6303):681-2 PMID: 2259380
  33. The E6 oncoprotein encoded by human papillomavirus types 16 and 18 promotes the degradation of p53.
    Cell. 1990 Dec 21;63(6):1129-36 PMID: 2175676
  34. Transcriptional activation by the pseudorabies virus immediate early protein.
    Genes Dev. 1990 Dec;4(12B):2376-82 PMID: 2177717
  35. Modulation of T-cell activation through protein kinase C- or A-dependent signalling pathways synergistically increases human immunodeficiency virus long terminal repeat induction by cytomegalovirus immediate-early proteins.
    J Virol. 1991 Oct;65(10):5477-84 PMID: 1654449
  36. Cellular tropism of the human retrovirus HTLV-III/LAV. I. Role of T cell activation and expression of the T4 antigen.
    J Immunol. 1985 Nov;135(5):3151-62 PMID: 2995487
  37. Specific interaction between the p53 cellular tumour antigen and major heat shock proteins.
    Nature. 1986 Mar 13-19;320(6058):182-4 PMID: 3513022
  38. Cytomegalovirus viremia increases with progressive immune deficiency in patients infected with HTLV-III.
    AIDS Res. 1986 Summer;2(3):175-81 PMID: 3019362
  39. Amplification of a gene encoding a p53-associated protein in human sarcomas.
    Nature. 1992 Jul 2;358(6381):80-3 PMID: 1614537
  40. Wild-type p53 activates transcription in vitro.
    Nature. 1992 Jul 2;358(6381):83-6 PMID: 1614538
  41. The mdm-2 oncogene product forms a complex with the p53 protein and inhibits p53-mediated transactivation.
    Cell. 1992 Jun 26;69(7):1237-45 PMID: 1535557
  42. Wild-type p53 mediates positive regulation of gene expression through a specific DNA sequence element.
    Genes Dev. 1992 Jul;6(7):1143-52 PMID: 1628822
  43. Inhibition of viral and cellular promoters by human wild-type p53.
    J Virol. 1992 Aug;66(8):4757-62 PMID: 1352831
  44. Modulation of cellular and viral promoters by mutant human p53 proteins found in tumor cells.
    J Virol. 1992 Oct;66(10):6164-70 PMID: 1356162
  45. Wild-type p53 binds to the TATA-binding protein and represses transcription.
    Proc Natl Acad Sci U S A. 1992 Dec 15;89(24):12028-32 PMID: 1465435
  46. Regulation of the human hsp70 promoter by p53.
    Science. 1993 Jan 1;259(5091):84-7 PMID: 8418500
  47. mdm2 expression is induced by wild type p53 activity.
    EMBO J. 1993 Feb;12(2):461-8 PMID: 8440237
  48. Induction of Sp1-p53 DNA-binding heterocomplexes during granulocyte/macrophage colony-stimulating factor-dependent proliferation in human erythroleukemia cell line TF-1.
    J Biol Chem. 1993 Apr 15;268(11):7923-8 PMID: 8463313
  49. Hepatitis B x antigen and p53 are associated in vitro and in liver tissues from patients with primary hepatocellular carcinoma.
    Oncogene. 1993 May;8(5):1109-17 PMID: 8386823
  50. T antigen is bound to a host protein in SV40-transformed cells.
    Nature. 1979 Mar 15;278(5701):261-3 PMID: 218111
  51. Characterization of a 54K dalton cellular SV40 tumor antigen present in SV40-transformed cells and uninfected embryonal carcinoma cells.
    Cell. 1979 May;17(1):43-52 PMID: 222475
  52. Adenovirus E1b-58kd tumor antigen and SV40 large tumor antigen are physically associated with the same 54 kd cellular protein in transformed cells.
    Cell. 1982 Feb;28(2):387-94 PMID: 6277513
  53. Recombinant genomes which express chloramphenicol acetyltransferase in mammalian cells.
    Mol Cell Biol. 1982 Sep;2(9):1044-51 PMID: 6960240
  54. Participation of p53 cellular tumour antigen in transformation of normal embryonic cells.
    Nature. 1984 Dec 13-19;312(5995):646-9 PMID: 6095116
  55. Characterization of long terminal repeat sequences of HTLV-III.
    Science. 1985 Feb 1;227(4686):538-40 PMID: 2981438
  56. The location of cis-acting regulatory sequences in the human T cell lymphotropic virus type III (HTLV-III/LAV) long terminal repeat.
    Cell. 1985 Jul;41(3):813-23 PMID: 2988790
  57. Wild-type but not mutant p53 can repress transcription initiation in vitro by interfering with the binding of basal transcription factors to the TATA motif.
    Oncogene. 1993 May;8(5):1183-93 PMID: 8479742
  58. Definition of a consensus binding site for p53.
    Nat Genet. 1992 Apr;1(1):45-9 PMID: 1301998
  59. The p53 activation domain binds the TATA box-binding polypeptide in Holo-TFIID, and a neighboring p53 domain inhibits transcription.
    Mol Cell Biol. 1993 Jun;13(6):3291-300 PMID: 8497252
  60. The tumor suppressor p53 regulates its own transcription.
    Mol Cell Biol. 1993 Jun;13(6):3415-23 PMID: 7684498
  61. The core promoter region of the P-glycoprotein gene is sufficient to confer differential responsiveness to wild-type and mutant p53.
    Oncogene. 1993 Jun;8(6):1529-35 PMID: 8502478
  62. Physical and functional interaction between WT1 and p53 proteins.
    Proc Natl Acad Sci U S A. 1993 Jun 1;90(11):5100-4 PMID: 8389468
  63. Gain of function mutations in p53.
    Nat Genet. 1993 May;4(1):42-6 PMID: 8099841
  64. p53 binds to the TATA-binding protein-TATA complex.
    J Biol Chem. 1993 Jun 25;268(18):13062-7 PMID: 8514746
  65. EBNA-5, an Epstein-Barr virus-encoded nuclear antigen, binds to the retinoblastoma and p53 proteins.
    Proc Natl Acad Sci U S A. 1993 Jun 15;90(12):5455-9 PMID: 8390666
  66. p53 and SV40 T antigen bind to the same region overlapping the conserved domain of the TATA-binding protein.
    Biochem Biophys Res Commun. 1993 Aug 31;195(1):428-34 PMID: 8395834
  67. Functional domains of adenovirus type 5 E1a proteins.
    Cell. 1987 Sep 25;50(7):1091-100 PMID: 2957064
  68. Mutant p53 DNA clones from human colon carcinomas cooperate with ras in transforming primary rat cells: a comparison of the "hot spot" mutant phenotypes.
    Cell Growth Differ. 1990 Dec;1(12):571-80 PMID: 2288874
  69. Wild-type but not mutant p53 immunopurified proteins bind to sequences adjacent to the SV40 origin of replication.
    Cell. 1991 Jun 14;65(6):1083-91 PMID: 1646078
  70. The p53 tumour suppressor gene.
    Nature. 1991 Jun 6;351(6326):453-6 PMID: 2046748
  71. Identification of p53 as a sequence-specific DNA-binding protein.
    Science. 1991 Jun 21;252(5013):1708-11 PMID: 2047879
  72. The MCK enhancer contains a p53 responsive element.
    Proc Natl Acad Sci U S A. 1991 Jun 1;88(11):4570-1 PMID: 1647009
  73. p53 mutations in human cancers.
    Science. 1991 Jul 5;253(5015):49-53 PMID: 1905840
  74. Differential ability of proximal and remote element pairs to cooperate in activating RNA polymerase II transcription.
    Mol Cell Biol. 1991 Sep;11(9):4561-71 PMID: 1875939
  75. Repression of the interleukin 6 gene promoter by p53 and the retinoblastoma susceptibility gene product.
    Proc Natl Acad Sci U S A. 1991 Sep 1;88(17):7605-9 PMID: 1652755
  76. Trans-activation of the human immunodeficiency virus long terminal repeat sequence by DNA viruses.
    Proc Natl Acad Sci U S A. 1986 Dec;83(24):9759-63 PMID: 2432602
  77. An inducible transcription factor activates expression of human immunodeficiency virus in T cells.
    Nature. 1987 Apr 16-22;326(6114):711-3 PMID: 3031512
  78. p53 and DNA polymerase alpha compete for binding to SV40 T antigen.
    Nature. 1987 Oct 1-7;329(6138):456-8 PMID: 3309672
  79. Mouse p53 inhibits SV40 origin-dependent DNA replication.
    Nature. 1987 Oct 1-7;329(6138):458-60 PMID: 2821401
  80. Immunological evidence for the association of p53 with a heat shock protein, hsc70, in p53-plus-ras-transformed cell lines.
    Mol Cell Biol. 1987 Aug;7(8):2863-9 PMID: 3313006
  81. Activation of human immunodeficiency virus by herpesvirus infection: identification of a region within the long terminal repeat that responds to a trans-acting factor encoded by herpes simplex virus 1.
    Proc Natl Acad Sci U S A. 1987 Nov;84(21):7408-12 PMID: 2823260
  82. Rearrangement of the p53 gene in human osteogenic sarcomas.
    Proc Natl Acad Sci U S A. 1987 Nov;84(21):7716-9 PMID: 2823272
  83. Adenovirus E1A activation domain binds the basic repeat in the TATA box transcription factor.
    Cell. 1991 Oct 18;67(2):365-76 PMID: 1833071
  84. Analysis of p53 mutants for transcriptional activity.
    Mol Cell Biol. 1991 Dec;11(12):6067-74 PMID: 1944276
  85. Wild-type p53 can down-modulate the activity of various promoters.
    Proc Natl Acad Sci U S A. 1991 Nov 15;88(22):9979-83 PMID: 1946467
  86. Modulation of activity of the promoter of the human MDR1 gene by Ras and p53.
    Science. 1992 Jan 24;255(5043):459-62 PMID: 1346476
  87. Activation of the human immunodeficiency virus type 1 long terminal repeat by vaccinia virus.
    J Virol. 1992 Apr;66(4):2051-6 PMID: 1548751
  88. p53: a transdominant regulator of transcription whose function is ablated by mutations occurring in human cancer.
    EMBO J. 1992 Apr;11(4):1383-90 PMID: 1314165
  89. Transcriptional regulation of the HIV-1 promoter by NF-kappa B in vitro.
    Genes Dev. 1992 May;6(5):761-74 PMID: 1577271
  90. Mammalian p53 can function as a transcription factor in yeast.
    Nucleic Acids Res. 1992 Apr 11;20(7):1539-45 PMID: 1579447
  91. A transcriptionally active DNA-binding site for human p53 protein complexes.
    Mol Cell Biol. 1992 Jun;12(6):2866-71 PMID: 1588974
  92. Oncogenic forms of p53 inhibit p53-regulated gene expression.
    Science. 1992 May 8;256(5058):827-30 PMID: 1589764
  93. Cancer. p53, guardian of the genome.
    Nature. 1992 Jul 2;358(6381):15-6 PMID: 1614522
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
1994-01-00
Pages
103-10
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC236269
Subset
IM
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