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  • Original Article
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Role of Smad3 in the regulation of rat telomerase reverse transcriptase by TGFβ

Abstract

Telomerase is induced in certain pathological conditions such as cancer and tissue injury and repair. This induction in fibroblasts from injured lung is repressed by transforming growth factor β (TGFβ) via yet unknown mechanisms. In this study, the role of Smad3 in the inhibition of telomerase reverse transcriptase (TERT) gene transcription by TGFβ was investigated. The rat TERT (rTERT) gene promoter was cloned by PCR amplification and fused with a luciferase reporter gene. This construct was used to analyse regulation of promoter activity in fibroblasts isolated from bleomycin-injured lung with induced telomerase activity. The results showed that TGFβ inhibited rTERT transcription while stimulating Smad3 expression. Interestingly, TGFβ also inhibited the expression of c-myc. Cotransfection with a Smad3 expressing plasmid further repressed rTERT transcription and c-myc expression, while cotransfection with the corresponding antisense Smad3 construct had the opposite effect. Mutation of an E-box in the rTERT promoter suppressed its activity, which could be further reduced by TGFβ treatment. In contrast, mutation at a Smad binding element enhanced promoter activity whose inhibition was impaired by TGFβ treatment. Thus TGFβ inhibition of rTERT gene expression was directly mediated by Smad3 via the Smad binding element, while c-myc appears to primarily regulate its constitutive or induced expression.

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Accession codes

Accessions

GenBank/EMBL/DDBJ

Abbreviations

rTERT :

rat telomerase reverse transcriptase

BLAST:

Basic Local Alignment Search Tool (National Center for Biotechnology Information software)

EMSA:

electrophoretic mobility shift assay

PBS:

phosphate-buffered saline

PDS:

plasma-derived serum

PMSF:

phenylmethylsulfonyl fluoride

TGFβ:

transforming growth factor β

References

  • Allsopp RC, Chang E, Kashefi-Aazam M, Rogaev EI, Piatyszek MA, Shay JW, Harley CB (1995). Cell Res 220: 194–200.

  • Avilion A, Piatyszek A, Gupta J, Shay J, Bacchetti S, Greider C . (1996). Cancer Res 56: 645–650.

  • Beattie TL, Zhou W, Robinson MO, Harrington L . (1998). Curr Biol 8: 177–180.

  • Cong YS, Wen J, Bacchetti S . (1999). Hum Mol Genet 8: 137–142.

  • Cong YS, Wright WE, Shay JW . (2002). Microbiol Mol Biol Rev 66: 407–425.

  • Dennler S, Itoh S, Vivien D, ten Dijke P, Huet S, Gauthier JM . (1998). EMBO J 17: 3091–3100.

  • Derynck R, Zhang YE . (2003). Nature 425: 577–584.

  • Dessain SK, Yu H, Reddel RR, Beijersbergen RL, Weinberg RA . (2000). Cancer Res 60: 537–541.

  • Devereux TR, Horikawa I, Anna CH, Annab LA, Afshari CA, Barrett JC . (1999). Cancer Res 59: 6087–6090.

  • Djojosubroto MW, Choi YS, Lee HW, Rudolph KL . (2003). Mol Cells 15: 164–175.

  • Feng J, Fung WD, Wang S, Weinrich SL, Avilion AA, Chiu CP et al. (1995). Science 269: 1236–1241.

  • Frederick JP, Liberati NT, Waddell DS, Shi Y, Wang XF . (2004). Mol Cell Biol 24: 2546–2559.

  • Fujimoto K, Kyo S, Takakura M, Kanaya T, Kitagawa Y, Itoh H et al. (2000). Nucleic Acids Res 28: 2557–2562.

  • Fuxe J, Akusjarvi G, Goike HM, Roos G, Collins VP, Pettersson RF . (2000). Cell Growth Differ 11: 373–384.

  • Gilley D, Tanaka H, Herbert BS . (2005). Int J Biochem Cell Biol 37: 1000–1013.

  • Greenberg RA, Allsopp RC, Chin L, Morin GB, DePinho RA . (1998). Oncogene 16: 1723–1730.

  • Greider CW, Blackburn EH . (1985). Cell 43: 405–413.

  • Greider CW . (1992). Curr Biol 2: 62–64.

  • Greider CW . (1998). Proc Natl Acad Sci USA 95: 90–92.

  • Groneberg DA, Witt H, Adcock IM, Hansen G, Springer J . (2004). Exp Lung Res 30: 223–250.

  • Holt SE, Aisner DL, Baur J, Tesmer VM, Dy M, Ouellette M et al. (1999). Genes Dev 13: 817–826.

  • Horikawa I, Cable PL, Afshari C, Barrett JC . (1999). Cancer Res 59: 826–880.

  • Hu B, Wu Z, Phan SH . (2003). Am J Respir Cell Mol Biol 29: 397–404.

  • Hu B, Wu Z, Jin H, Hashimoto N, Liu T, Phan SH . (2004). J Immunol 173: 4661–4668.

  • Kanaya T, Kyo S, Hamada K, Takakura M, Kitagawa Y, Harada H et al. (2000). Clin Cancer Res 6: 1239–1247.

  • Kang SS, Kwon T, Kwon DY, Do SI . (1999). J Biol Chem 274: 13085–13090.

  • Kim NW, Piatyszek MA, Prowse KR, Harley CB, West MD, Ho PL et al. (1994). Science 266: 2011–2015.

  • Kyo S, Takakura M, Taira T, Kanaya T, Itoh H, Yutsudo M et al. (2000). Nucleic Acids Res 28: 669–677.

  • Li H, Cao Y, Berndt MC, Funder JW, Liu JP . (1999). Oncogene 18: 6785–6794.

  • Li H, Zhao L, Yang Z, Funder JW, Liu JP . (1998). J Biol Chem 273: 33436–33442.

  • Liu JP . (1999). FASEB J 13: 2091–2104.

  • Liu K, Schoonmaker MM, Levine BL, June CH, Hodes RJ, Weng N . (1999). Proc Natl Acad Sci USA 96: 5147–5152.

  • Liu T, Nozaki Y, Phan SH . (2002). Am J Respir Cell Mol Biol 26: 534–540.

  • Morin GB . (1989). Cell 59: 521–529.

  • Moyzis RK, Buckingham JM, Cram LS, Dani M, Deaven LL, Jones MD et al. (1988). Proc Natl Acad Sci USA 85: 6622–6626.

  • Muniyappa K, Kironmai KM . (1998). Crit Rev Biochem Mol Biol 33: 297–336.

  • Nakayama J, Tahara H, Tahara E, Saito M, Ito K, Nakamura H et al. (1998). Nat Genet 18: 65–68.

  • Nozaki Y, Liu T, Hatano K, Gharaee-Kermani M, Phan SH . (2000). Am J Respir Cell Mol Biol 23: 460–465.

  • Oh S, Song YH, Yim J, Kim TK . (2000). Oncogene 19: 1485–1490.

  • Oh S, Song Y, Yim J, Kim TK . (1999). J Biol Chem 274: 37473–37478.

  • Pays E . (1985). Ann Inst Pasteur Immunol 136C: 25–39.

  • Phan SH, Varani J, Smith D . (1985). J Clin Invest 76: 241–247.

  • Satyanarayana A, Manns MP, Rudolph KL . (2004). Hepatology 40: 276–283.

  • Shay JW, Bacchetti S . (1997). Eur J Cancer 33: 787–791.

  • Tahara H, Nakanishi T, Kitamoto M, Nakashio R, Shay JW, Tahara E et al. (1995). Cancer Res 55: 2734–2736.

  • Takakura M, Kyo S, Kanaya T, Hirano H, Takeda J, Yutsudo M et al. (1999). Cancer Res 59: 551–557.

  • Taylor RS, Ramirez RD, Ogoshi M, Chaffins M, Piatyszek MA, Shay JW . (1996). J Invest Dermatol 106: 759–765.

  • Tsujiuchi T, Tsutsumi M, Kido A, Takahama M, Sakitani H, Iki K et al. (1998). Cancer Lett 122: 115–120.

  • Vaziri H, Benchimol S . (1996). Exp Gerontol 31: 295–301.

  • Wang J, Xie LY, Allan S, Beach D, Hannon GJ . (1998). Genes Dev 12: 1769–1774.

  • Weinrich SL, Pruzan R, Ma L, Ouellette M, Tesmer VM, Holt SE et al. (1997). Nat Genet 17: 498–502.

  • Wick M, Zubov D, Hagen G . (1999). Gene 232: 97–106.

  • Wu KJ, Grandori C, Amacker M, Simon-Vermot N, Polack A, Lingner J et al. (1999). Nat Genet 21: 220–224.

  • Xu D, Popov N, Hou M, Wang Q, Bjorkholm M, Gruber A et al. (2001). Proc Natl Acad Sci USA 98: 3826–3831.

  • Yang H, Kyo S, Takatura M, Sun L . (2001). Cell Growth Differ 12: 119–127.

  • Zawel L, Dai JL, Vogelstein B . (1998). Cell 1: 611–617.

  • Zhao H, Zeng S, Zhu X, Zuo Z, Zeng Q, Chao W . (2003). Yan Ke Xue Bao 19: 60–64.

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Acknowledgements

We are grateful for the generous gifts of rat Smad3 plasmid from Dr Wylie Vale, Salk Institute. The expert technical assistance of Hong Jin is also gratefully acknowledged. This work is supported in part by NIH Grants HL52285 and HL77297.

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Correspondence to S H Phan.

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Hu, B., Tack, D., Liu, T. et al. Role of Smad3 in the regulation of rat telomerase reverse transcriptase by TGFβ. Oncogene 25, 1030–1041 (2006). https://doi.org/10.1038/sj.onc.1209140

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