Promoter inhibition by DNA methylation: a reversible signal

Doerfler W, Weisshaar B, Hoeveler A, Knebel D, Muller U, Dobrzanski P, Lichtenberg U, Achten S, Hermann R (1988)
Gene 74(1): 129-133.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Doerfler, W; Weisshaar, BerndUniBi ; Hoeveler, A; Knebel, D; Muller, U; Dobrzanski, P; Lichtenberg, U; Achten, S; Hermann, R
Erscheinungsjahr
1988
Zeitschriftentitel
Gene
Band
74
Ausgabe
1
Seite(n)
129-133
ISSN
0378-1119
Page URI
https://pub.uni-bielefeld.de/record/1990293

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Doerfler W, Weisshaar B, Hoeveler A, et al. Promoter inhibition by DNA methylation: a reversible signal. Gene. 1988;74(1):129-133.
Doerfler, W., Weisshaar, B., Hoeveler, A., Knebel, D., Muller, U., Dobrzanski, P., Lichtenberg, U., et al. (1988). Promoter inhibition by DNA methylation: a reversible signal. Gene, 74(1), 129-133. https://doi.org/10.1016/0378-1119(88)90268-5
Doerfler, W, Weisshaar, Bernd, Hoeveler, A, Knebel, D, Muller, U, Dobrzanski, P, Lichtenberg, U, Achten, S, and Hermann, R. 1988. “Promoter inhibition by DNA methylation: a reversible signal”. Gene 74 (1): 129-133.
Doerfler, W., Weisshaar, B., Hoeveler, A., Knebel, D., Muller, U., Dobrzanski, P., Lichtenberg, U., Achten, S., and Hermann, R. (1988). Promoter inhibition by DNA methylation: a reversible signal. Gene 74, 129-133.
Doerfler, W., et al., 1988. Promoter inhibition by DNA methylation: a reversible signal. Gene, 74(1), p 129-133.
W. Doerfler, et al., “Promoter inhibition by DNA methylation: a reversible signal”, Gene, vol. 74, 1988, pp. 129-133.
Doerfler, W., Weisshaar, B., Hoeveler, A., Knebel, D., Muller, U., Dobrzanski, P., Lichtenberg, U., Achten, S., Hermann, R.: Promoter inhibition by DNA methylation: a reversible signal. Gene. 74, 129-133 (1988).
Doerfler, W, Weisshaar, Bernd, Hoeveler, A, Knebel, D, Muller, U, Dobrzanski, P, Lichtenberg, U, Achten, S, and Hermann, R. “Promoter inhibition by DNA methylation: a reversible signal”. Gene 74.1 (1988): 129-133.

9 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Methylated DAPK and APC promoter DNA detection in peripheral blood is significantly associated with apparent residual tumor and outcome.
Hoffmann AC, Vallböhmer D, Prenzel K, Metzger R, Heitmann M, Neiss S, Ling F, Hölscher AH, Schneider PM, Brabender J., J Cancer Res Clin Oncol 135(9), 2009
PMID: 19259700
Hypomethylation of PRAME is responsible for its aberrant overexpression in human malignancies.
Schenk T, Stengel S, Goellner S, Steinbach D, Saluz HP., Genes Chromosomes Cancer 46(9), 2007
PMID: 17534929
On the biological significance of DNA methylation.
Doerfler W., Biochemistry (Mosc) 70(5), 2005
PMID: 15948705
Improving the safety of embryo technologies: possible role of genomic imprinting.
Young LE, Fairburn HR., Theriogenology 53(2), 2000
PMID: 10735055
Lipotrope-modified diets enhance nitrosomethylurea-induced mammary carcinogenesis in female rats.
Choi CB, Baik MG, Keller WL, Park CS., Nutr Cancer 20(3), 1993
PMID: 7509056
Initial characterization of the four promoters of the human insulin-like growth factor II gene.
van Dijk MA, van Schaik FM, Bootsma HJ, Holthuizen P, Sussenbach JS., Mol Cell Endocrinol 81(1-3), 1991
PMID: 1797589
Hypomethylation of the interphotoreceptor retinoid-binding protein (IRBP) promotor and first exon is linked to expression of the gene.
Albini A, Toffenetti J, Zhu Z, Chader GJ, Noonan DM., Nucleic Acids Res 18(17), 1990
PMID: 2402443

18 References

Daten bereitgestellt von Europe PubMed Central.

A very strong enhancer is located upstream of an immediate early gene of human cytomegalovirus.
Boshart M, Weber F, Jahn G, Dorsch-Hasler K, Fleckenstein B, Schaffner W., Cell 41(2), 1985
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DNA methylation--a regulatory signal in eukaryotic gene expression.
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Site-specific promoter methylations and gene inactivation
Doerfler, 1985
Eukaryotic gene inactivation by sequence-specific promoter methylation and the release of the transcription block
Doerfler, 1988
Reactivation of the methylation-inhibited late E2A promoter of adenovirus type 2 by a strong enhancer of human cytomegalovirus.
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Expression of the chloramphenicol acetyltransferase gene in mammalian cells under the control of adenovirus type 12 promoters: effect of promoter methylation on gene expression
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DNA methylations of three 5'-CCGG-3' sites in the promoter and 5' region inactivate the E2a gene of adenovirus type 2
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Trans effect of the E1 region of adenoviruses on the expression of a prokaryotic gene in mammalian cells: resistance to 5'-CCGG-3' methylation
Langner, 1986
Reactivation of the methylation-inactivated late E2A promoter of adenovirus type 2 by E1A (13 S) functions.
Weisshaar B, Langner KD, Juttermann R, Muller U, Zock C, Klimkait T, Doerfler W., J. Mol. Biol. 202(2), 1988
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