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PMID: 17962299 Published · ppublish English Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

Expression of the CTCF-paralogous cancer-testis gene, brother of the regulator of imprinted sites (BORIS), is regulated by three alternative promoters modulated by CpG methylation and by CTCF and p53 transcription factors.

Nucleic acids research ·Vol. 35 ·No. 21 ·2007-00-00 ·Pages 7372-88

Renaud S, Pugacheva EM, Delgado MD, Braunschweig R, Abdullaev Z, Loukinov D, Benhattar J, Lobanenkov V

Abstract

BORIS, like other members of the 'cancer/testis antigen' family, is normally expressed in testicular germ cells and repressed in somatic cells, but is aberrantly activated in cancers. To understand regulatory mechanisms governing human BORIS expression, we characterized its 5'-flanking region. Using 5' RACE, we identified three promoters, designated A, B and C, corresponding to transcription start sites at -1447, -899 and -658 bp upstream of the first ATG. Alternative promoter usage generated at least five alternatively spliced BORIS mRNAs with different half-lives determined by varying 5'-UTRs. In normal testis, BORIS is transcribed from all three promoters, but 84% of the 30 cancer cell lines tested used only promoter(s) A and/or C while the others utilized primarily promoters B and C. The differences in promoter usage between normal and cancer cells suggested that they were subject to differential regulation. We found that DNA methylation and functional p53 contributes to the negative regulation of each promoter. Moreover, reduction of CTCF in normally BORIS-negative human fibroblasts resulted in derepression of BORIS promoters. These results provide a mechanistic basis for understanding cancer-related associations between haploinsufficiency of CTCF and BORIS derepression, and between the lack of functional p53 and aberrant activation of BORIS.

MeSH Terms
5' Untranslated Regions/analysis Alternative Splicing Base Sequence CCCTC-Binding Factor Cell Line Cell Line, Tumor CpG Islands DNA Methylation DNA-Binding Proteins/biosynthesis,genetics,metabolism Gene Expression Regulation Humans Molecular Sequence Data Neoplasms/genetics Promoter Regions, Genetic RNA Stability RNA, Messenger/metabolism Repressor Proteins/metabolism Transcription Initiation Site Transcription, Genetic Tumor Suppressor Protein p53/metabolism
Chemicals
5' Untranslated Regions CCCTC-Binding Factor CTCF protein, human CTCFL protein, human DNA-Binding Proteins RNA, Messenger Repressor Proteins Tumor Suppressor Protein p53
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Renaud Stéphanie
Section of Molecular Pathology, Laboratory of Immunopathology, NIAID, NIH, Rockville, MD 20815, USA.
Pugacheva Elena M
Delgado M Dolores
Braunschweig Richard
Abdullaev Ziedulla
Loukinov Dmitri
Benhattar Jean
Lobanenkov Victor
References (62)
62 references, click to expand
  1. Functional association of CTCF with the insulator upstream of the H19 gene is parent of origin-specific and methylation-sensitive.
    Curr Biol. 2000 Jul 13;10(14):853-6 PMID: 10899010
  2. Novel imprinted DLK1/GTL2 domain on human chromosome 14 contains motifs that mimic those implicated in IGF2/H19 regulation.
    Genome Res. 2000 Nov;10(11):1711-8 PMID: 11076856
  3. Variants of the 5'-untranslated region of human NCF2: expression and translational efficiency.
    Gene. 2006 Jan 17;366(1):169-79 PMID: 16310324
  4. p53 regulates insulin-like growth factor-I (IGF-I) receptor expression and IGF-I-induced tyrosine phosphorylation in an osteosarcoma cell line: interaction between p53 and Sp1.
    Endocrinology. 1998 Mar;139(3):1101-7 PMID: 9492043
  5. CTCF, a candidate trans-acting factor for X-inactivation choice.
    Science. 2002 Jan 11;295(5553):345-7 PMID: 11743158
  6. The testis-specific factor CTCFL cooperates with the protein methyltransferase PRMT7 in H19 imprinting control region methylation.
    PLoS Biol. 2006 Oct;4(11):e355 PMID: 17048991
  7. Associations between promoter usage and alternative splicing of the glucocorticoid receptor gene.
    J Mol Endocrinol. 2007 Feb;38(1-2):91-8 PMID: 17242172
  8. CTCF is a uniquely versatile transcription regulator linked to epigenetics and disease.
    Trends Genet. 2001 Sep;17(9):520-7 PMID: 11525835
  9. A CTCF-binding silencer regulates the imprinted genes AWT1 and WT1-AS and exhibits sequential epigenetic defects during Wilms' tumourigenesis.
    Hum Mol Genet. 2007 Feb 1;16(3):343-54 PMID: 17210670
  10. A methylation sensitive dot blot assay (MS-DBA) for the quantitative analysis of DNA methylation in clinical samples.
    J Clin Pathol. 2005 Feb;58(2):155-8 PMID: 15677535
  11. Specific roles of 5' RNA secondary structures in stabilizing transcripts in chloroplasts.
    Nucleic Acids Res. 2005 Aug 22;33(15):4754-61 PMID: 16116040
  12. Evolutionary diversification of SPANX-N sperm protein gene structure and expression.
    PLoS One. 2007 Apr 04;2(4):e359 PMID: 17406683
  13. Reciprocal binding of CTCF and BORIS to the NY-ESO-1 promoter coincides with derepression of this cancer-testis gene in lung cancer cells.
    Cancer Res. 2005 Sep 1;65(17):7763-74 PMID: 16140944
  14. Familial cases of point mutations in the XIST promoter reveal a correlation between CTCF binding and pre-emptive choices of X chromosome inactivation.
    Hum Mol Genet. 2005 Apr 1;14(7):953-65 PMID: 15731119
  15. Elicitation of T cell responses to histologically unrelated tumors by immunization with the novel cancer-testis antigen, brother of the regulator of imprinted sites.
    J Immunol. 2007 Jan 1;178(1):566-73 PMID: 17182597
  16. Characterization of the p53 tumor suppressor pathway in cell lines of the National Cancer Institute anticancer drug screen and correlations with the growth-inhibitory potency of 123 anticancer agents.
    Cancer Res. 1997 Oct 1;57(19):4285-300 PMID: 9331090
  17. Common genetic polymorphisms in the 5'-flanking region of the SULT1A1 gene: haplotypes and their association with platelet enzymatic activity.
    Pharmacogenet Genomics. 2005 Jul;15(7):465-73 PMID: 15970794
  18. Mutations in the IGF-II pathway that confer resistance to lytic reovirus infection.
    BMC Cell Biol. 2004 Aug 27;5:32 PMID: 15333144
  19. A sequence motif in the simian virus 40 (SV40) early core promoter affects alternative splicing of transcribed mRNA.
    J Biol Chem. 2007 Apr 20;282(16):11648-57 PMID: 17331949
  20. Functional phosphorylation sites in the C-terminal region of the multivalent multifunctional transcriptional factor CTCF.
    Mol Cell Biol. 2001 Mar;21(6):2221-34 PMID: 11238955
  21. CTCF binds the proximal exonic region of hTERT and inhibits its transcription.
    Nucleic Acids Res. 2005 Dec 02;33(21):6850-60 PMID: 16326864
  22. The potential of BORIS detected in the leukocytes of breast cancer patients as an early marker of tumorigenesis.
    Clin Cancer Res. 2006 Oct 15;12(20 Pt 1):5978-86 PMID: 17062669
  23. Rasgrf1 imprinting is regulated by a CTCF-dependent methylation-sensitive enhancer blocker.
    Mol Cell Biol. 2005 Dec;25(24):11184-90 PMID: 16314537
  24. Diferric transferrin regulates transferrin receptor 2 protein stability.
    Blood. 2004 Dec 15;104(13):4287-93 PMID: 15319290
  25. Sequence variants in the 5' flanking region of the leptin gene are associated with obesity in women.
    Ann Hum Genet. 1999 May;63(Pt 3):227-34 PMID: 10738535
  26. Differential methylation of Xite and CTCF sites in Tsix mirrors the pattern of X-inactivation choice in mice.
    Mol Cell Biol. 2006 Mar;26(6):2109-17 PMID: 16507990
  27. The stem-loop region of the tobacco psbA 5'UTR is an important determinant of mRNA stability and translation efficiency.
    Mol Genet Genomics. 2003 Jun;269(3):340-9 PMID: 12690442
  28. Epigenetic control of CTCFL/BORIS and OCT4 expression in urogenital malignancies.
    Biochem Pharmacol. 2006 Nov 30;72(11):1577-88 PMID: 16854382
  29. Conditional expression of the CTCF-paralogous transcriptional factor BORIS in normal cells results in demethylation and derepression of MAGE-A1 and reactivation of other cancer-testis genes.
    Cancer Res. 2005 Sep 1;65(17):7751-62 PMID: 16140943
  30. Antitumor efficacy of DNA vaccination to the epigenetically acting tumor promoting transcription factor BORIS and CD80 molecular adjuvant.
    J Cell Biochem. 2006 Aug 1;98(5):1037-43 PMID: 16741971
  31. Deregulation of DNA methyltransferases and loss of parental methylation at the insulin-like growth factor II (Igf2)/H19 loci in p53 knockout mice prior to tumor development.
    J Cell Biochem. 2005 Feb 15;94(3):585-96 PMID: 15543560
  32. CTCF is conserved from Drosophila to humans and confers enhancer blocking of the Fab-8 insulator.
    EMBO Rep. 2005 Feb;6(2):165-70 PMID: 15678159
  33. Methylation of a CTCF-dependent boundary controls imprinted expression of the Igf2 gene.
    Nature. 2000 May 25;405(6785):482-5 PMID: 10839546
  34. Karyotypic complexity of the NCI-60 drug-screening panel.
    Cancer Res. 2003 Dec 15;63(24):8634-47 PMID: 14695175
  35. Identification of a Ctcf cofactor, Yy1, for the X chromosome binary switch.
    Mol Cell. 2007 Jan 12;25(1):43-56 PMID: 17218270
  36. mRNA stability in mammalian cells.
    Microbiol Rev. 1995 Sep;59(3):423-50 PMID: 7565413
  37. Decision making by p53: life, death and cancer.
    Cell Death Differ. 2003 Apr;10(4):431-42 PMID: 12719720
  38. p53 negatively regulates cdc2 transcription via the CCAAT-binding NF-Y transcription factor.
    J Biol Chem. 1999 Oct 15;274(42):29677-82 PMID: 10514438
  39. Differential inhibition of mRNA degradation pathways by novel cap analogs.
    J Biol Chem. 2006 Jan 27;281(4):1857-67 PMID: 16257956
  40. Regulatory factor interactions and somatic silencing of the germ cell-specific ALF gene.
    J Biol Chem. 2006 Nov 10;281(45):34288-98 PMID: 16966320
  41. Molecular links between X-inactivation and autosomal imprinting: X-inactivation as a driving force for the evolution of imprinting?
    Curr Biol. 2003 Mar 18;13(6):R242-54 PMID: 12646153
  42. Allele-specific binding of CTCF to the multipartite imprinting control region KvDMR1.
    Mol Cell Biol. 2007 Apr;27(7):2636-47 PMID: 17242189
  43. Loss of imprinting of IGF2 and H19 in osteosarcoma is accompanied by reciprocal methylation changes of a CTCF-binding site.
    Hum Mol Genet. 2003 Mar 1;12(5):535-49 PMID: 12588801
  44. Chromatin architecture near a potential 3' end of the igh locus involves modular regulation of histone modifications during B-Cell development and in vivo occupancy at CTCF sites.
    Mol Cell Biol. 2005 Feb;25(4):1511-25 PMID: 15684400
  45. c-Myc antagonizes the effect of p53 on apoptosis and p21WAF1 transactivation in K562 leukemia cells.
    Oncogene. 2000 Apr 27;19(18):2194-204 PMID: 10822369
  46. The novel BORIS + CTCF gene family is uniquely involved in the epigenetics of normal biology and cancer.
    Semin Cancer Biol. 2002 Oct;12(5):399-414 PMID: 12191639
  47. Global expression analysis of cancer/testis genes in uterine cancers reveals a high incidence of BORIS expression.
    Clin Cancer Res. 2007 Mar 15;13(6):1713-9 PMID: 17363524
  48. Influence of the 5' intron in the control of acetylcholinesterase gene expression during myogenesis.
    Chem Biol Interact. 2005 Dec 15;157-158:372-3 PMID: 16429497
  49. BORIS, a novel male germ-line-specific protein associated with epigenetic reprogramming events, shares the same 11-zinc-finger domain with CTCF, the insulator protein involved in reading imprinting marks in the soma.
    Proc Natl Acad Sci U S A. 2002 May 14;99(10):6806-11 PMID: 12011441
  50. The many roles of the transcriptional regulator CTCF.
    Biochem Cell Biol. 2003 Jun;81(3):161-7 PMID: 12897849
  51. CTCF mediates methylation-sensitive enhancer-blocking activity at the H19/Igf2 locus.
    Nature. 2000 May 25;405(6785):486-9 PMID: 10839547
  52. Adenoviral expression of p53 represses telomerase activity through down-regulation of human telomerase reverse transcriptase transcription.
    Clin Cancer Res. 2000 Apr;6(4):1239-47 PMID: 10778946
  53. Epigenetic boundaries of tumour suppressor gene promoters: the CTCF connection and its role in carcinogenesis.
    J Cell Mol Med. 2006 Jul-Sep;10(3):554-68 PMID: 16989720
  54. The antioxidant function of the p53 tumor suppressor.
    Nat Med. 2005 Dec;11(12):1306-13 PMID: 16286925
  55. Cloning and characterization of zebrafish CTCF: Developmental expression patterns, regulation of the promoter region, and evolutionary aspects of gene organization.
    Gene. 2006 Jun 21;375:26-36 PMID: 16647825
  56. Inhibition of cyclooxygenase-2 gene expression by p53.
    J Biol Chem. 1999 Apr 16;274(16):10911-5 PMID: 10196169
  57. Multifunctional zinc finger proteins in development and disease.
    Ann Hum Genet. 2002 Nov;66(Pt 5-6):331-42 PMID: 12485467
  58. Live or let die: the cell's response to p53.
    Nat Rev Cancer. 2002 Aug;2(8):594-604 PMID: 12154352
  59. Methylation-sensitive single-strand conformation analysis: a rapid method to screen for and analyze DNA methylation.
    Methods Mol Biol. 2004;287:181-93 PMID: 15273412
  60. Down-regulation of fibronectin gene expression by the p53 tumor suppressor protein.
    Cell Growth Differ. 1996 May;7(5):629-34 PMID: 8732672
  61. Characterization of the chicken CTCF genomic locus, and initial study of the cell cycle-regulated promoter of the gene.
    J Biol Chem. 1998 Oct 9;273(41):26571-9 PMID: 9756895
  62. p53 is a NF-Y- and p21-independent, Sp1-dependent repressor of cyclin B1 transcription.
    FEBS Lett. 2005 Feb 14;579(5):1001-7 PMID: 15710382
Article Info
Journal
Nucleic acids research
Abbr.
Nucleic Acids Res
ISSN
1362-4962
Published
2007-00-00
Epub
2007-00-25
Pages
7372-88
Language
English
Region
England
NLM ID
0411011
PMCID
PMC2175345
Subset
IM
Grants
Intramural NIH HHS · United States
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