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Sp1 cooperates with c-Myc to activate transcription of the human telomerase reverse transcriptase gene (hTERT)
- Source :
- Nucleic Acids Research. 28:669-677
- Publication Year :
- 2000
- Publisher :
- Oxford University Press (OUP), 2000.
-
Abstract
- Telomerase activation is thought to be a critical step in cellular immortalization and carcinogenesis. The human telomerase catalytic subunit (hTERT) is a rate limiting determinant of the enzymatic activity of human telomerase. In the previous study, we identified the proximal 181 bp core promoter responsible for transcriptional activity of the hTERT gene. To identify the regulatory factors of transcription, transient expression assays were performed using hTERT promoter reporter plasmids. Serial deletion assays of the core promoter revealed that the 5'-region containing the E-box, which binds Myc/Max, as well as the 3'-region containing the GC-box, which binds Sp1, are essential for transactivation. The mutations introduced in the E-box or GC-box significantly decreased transcriptional activity of the promoter. Overexpression of Myc/Max or Sp1 led to significant activation of transcription in a cell type-specific manner, while Mad/Max introduction repressed it. However, the effects of Myc/Max on transactivation were marginal when Sp1 sites were mutated. Western blot analysis using various cell lines revealed a positive correlation between c-Myc and Sp1 expression and transcriptional activity of hTERT. Using fibroblast lineages in different stages of transformation, we found that c-Myc and Sp1 were induced to a dramatic extent when cells overcame replicative senescence and obtained immortal characteristics, in association with telomerase activation. These findings suggest that c-Myc and Sp1 cooperatively function as the major determinants of hTERT expression, and that the switching functions of Myc/Max and Mad/Max might also play roles in telomerase regulation.
- Subjects :
- Oligodeoxyribonucleotides/metabolism
Repressor Proteins/metabolism
Telomerase
Cell Transformation, Neoplastic/genetics
Basic-Leucine Zipper Transcription Factors
Transactivation
Repressor Proteins/genetics
Transcription (biology)
Tumor Cells, Cultured
Promoter Regions, Genetic
Mutation/genetics
Cell Line, Transformed
DNA-Binding Proteins/genetics
Basic Helix-Loop-Helix Leucine Zipper Transcription Factors
Dimerization
Fibroblasts/pathology
DNA-Binding Proteins
Cell Transformation, Neoplastic
Oligodeoxyribonucleotides
Promoter Regions, Genetic/genetics
Sp1 Transcription Factor/genetics
Telomerase/genetics
Proto-Oncogene Proteins c-myc/genetics
Transfection
Consensus Sequence/genetics
Cell aging
Oligodeoxyribonucleotides/genetics
Transcription Factors
Transcriptional Activation
Sp1 Transcription Factor
Fibroblasts/enzymology
Molecular Sequence Data
Humans
Biology
Response Elements
Binding, Competitive
Article
Proto-Oncogene Proteins c-myc
Base Sequence
Consensus Sequence
Genetics
Telomerase reverse transcriptase
Transcriptional Activation/genetics
Transcription factor
Response Elements/genetics
Sp1 transcription factor
Proto-Oncogene Proteins c-myc/metabolism
Telomerase/metabolism
Promoter
Fibroblasts/metabolism
Fibroblasts
Molecular biology
Repressor Proteins
Mutation
DNA-Binding Proteins/metabolism
Sp1 Transcription Factor/metabolism
Subjects
Details
- ISSN :
- 13624962
- Volume :
- 28
- Database :
- OpenAIRE
- Journal :
- Nucleic Acids Research
- Accession number :
- edsair.doi.dedup.....8d10baa0badf2bd8c3fd707167dcb549
- Full Text :
- https://doi.org/10.1093/nar/28.3.669