Literature DB >> 10786671

Expression of the hTERT gene is regulated at the level of transcriptional initiation and repressed by Mad1.

C Günes1, S Lichtsteiner, A P Vasserot, C Englert.   

Abstract

Telomerase, an enzymatic activity responsible for the replication of chromosome end structures, is strongly upregulated in most human cancers. In contrast, most differentiated tissues are telomerase negative. The rate-limiting step for telomerase activity seems to be the expression of the catalytic subunit of the enzyme, encoded by the human telomerase reverse transcriptase (hTERT) gene. The precise mechanism of how hTERT is regulated has not been elucidated yet. We show here that the down-regulation of hTERT mRNA during 12-O-tetradecanoylphorbol-13-acetate-induced differentiation of human U937 cells is a consequence of a fast decrease in the rate of transcription rather than changes in its half-life. The only transcription factor that has so far been implicated in the regulation of hTERT expression is the c-Myc oncoprotein. Our analysis shows that another member of the myc/marx/mad network, mad1, encoding a transcriptional repressor that is significantly increased by 12-O-tetra-decanoylphorbol-13-acetate treatment, represses hTERT promoter-driven reporter gene activity in transient transfection assays. This effect is dependent on the NH2 terminal domain of Madl, which mediates the association with the transcriptional corepressor mSin3. Our findings suggest the involvement of an additional transcription factor in the regulation of hTERT expression and may provide a model for how hTERT activity is controlled during the differentiation process in human somatic tissues.

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Year:  2000        PMID: 10786671

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  58 in total

Review 1.  Natural and pharmacological regulation of telomerase.

Authors:  Jean-Louis Mergny; Jean-François Riou; Patrick Mailliet; Marie-Paule Teulade-Fichou; Eric Gilson
Journal:  Nucleic Acids Res       Date:  2002-02-15       Impact factor: 16.971

2.  Regulatory mechanisms of human and mouse telomerase reverse transcriptase gene transcription: distinct dependency on c-Myc.

Authors:  Tsukasa Fujiki; Miyako Udono; Keishi Kadooka; Shuntaro Yamashita; Takumi Miura; Sanetaka Shirahata; Yoshinori Katakura
Journal:  Cytotechnology       Date:  2010-05-08       Impact factor: 2.058

3.  Switch from Myc/Max to Mad1/Max binding and decrease in histone acetylation at the telomerase reverse transcriptase promoter during differentiation of HL60 cells.

Authors:  D Xu; N Popov; M Hou; Q Wang; M Björkholm; A Gruber; A R Menkel; M Henriksson
Journal:  Proc Natl Acad Sci U S A       Date:  2001-03-27       Impact factor: 11.205

4.  Potent antitumoral efficacy of a novel replicative adenovirus CNHK300 targeting telomerase-positive cancer cells.

Authors:  C-Q Su; J Sham; H-B Xue; X-H Wang; D Chua; Z-F Cui; L-H Peng; L-F Li; L-H Jiang; M-C Wu; Q-J Qian
Journal:  J Cancer Res Clin Oncol       Date:  2004-07-09       Impact factor: 4.553

5.  Cancer. TERT promoter mutations and telomerase reactivation in urothelial cancer.

Authors:  Sumit Borah; Linghe Xi; Arthur J Zaug; Natasha M Powell; Garrett M Dancik; Scott B Cohen; James C Costello; Dan Theodorescu; Thomas R Cech
Journal:  Science       Date:  2015-02-05       Impact factor: 47.728

6.  The hTERT and hTERC telomerase gene promoters are activated by the second exon of the adenoviral protein, E1A, identifying the transcriptional corepressor CtBP as a potential repressor of both genes.

Authors:  Rosalind M Glasspool; Sharon Burns; Stacey F Hoare; Catharina Svensson; W Nicol Keith
Journal:  Neoplasia       Date:  2005-06       Impact factor: 5.715

7.  Hepatitis B virus X gene induces human telomerase reverse transcriptase mRNA expression in cultured normal human cholangiocytes.

Authors:  Sheng-Quan Zou; Zhen-Liang Qu; Zhan-Fei Li; Xin Wang
Journal:  World J Gastroenterol       Date:  2004-08-01       Impact factor: 5.742

8.  TERT promoter mutations and prognosis in solitary fibrous tumor.

Authors:  Armita Bahrami; Seungjae Lee; Inga-Marie Schaefer; Jennifer M Boland; Kurt T Patton; Stanley Pounds; Christopher D Fletcher
Journal:  Mod Pathol       Date:  2016-08-26       Impact factor: 7.842

9.  Therapeutic molecular targeting of 15-lipoxygenase-1 in colon cancer.

Authors:  Yuanqing Wu; Bingliang Fang; Xiulan Q Yang; Li Wang; Dongning Chen; Victor Krasnykh; Bing Z Carter; Jeffrey S Morris; Imad Shureiqi
Journal:  Mol Ther       Date:  2008-03-18       Impact factor: 11.454

10.  Repression of telomerase gene promoter requires human-specific genomic context and is mediated by multiple HDAC1-containing corepressor complexes.

Authors:  Yuanjun Zhao; Shuwen Wang; Fan Zhang; Mariano Russo; Steven B McMahon; Jiyue Zhu
Journal:  FASEB J       Date:  2016-12-09       Impact factor: 5.191

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