Skip to main content

Thank you for visiting nature.com. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser (or turn off compatibility mode in Internet Explorer). In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript.

  • Short Report
  • Published:

Accelerated degradation of cellular FLIP protein through the ubiquitin-proteasome pathway in p53-mediated apoptosis of human cancer cells

Abstract

Apoptosis is a morphologically distinct form of programmed cell death that plays a major role in cancer treatments. This cellular suicide program is known to be regulated by many different signals from both intracellular and extracellular stimuli. Here we report that p53 suppressed expression of the cellular FLICE-inhibitory protein (FLIP) that potentially blocks apoptotic signaling in human colon cancer cell lines expressing mutated and wild-type p53. In contrast, the expression of the death receptor KILLER/DR5 (TRAIL-R2) had no effect on FLIP expression, although exogenous p53 is known to induce KILLER/DR5 expression. In line with these observations, FLIP-negative cancer cells were sensitive to both p53- and KILLER/DR5-mediated apoptosis, whereas cells containing high levels of FLIP underwent apoptotic cell death when triggered by ectopic p53 expression but not by KILLER/DR5 expression. Treating the cells with a specific inhibitor of the proteasome inhibited the decrease of FLIP by p53, suggesting that p53 enhances the degradation of FLIP via a ubiquitin-proteasome pathway. Thus, the data indicate that p53-mediated downregulation of FLIP may explain the potent sensitization of human cancer cells to the apoptotic suicide program induced by wild-type p53 gene transfer.

This is a preview of subscription content, access via your institution

Access options

Buy this article

Prices may be subject to local taxes which are calculated during checkout

Figure 1
Figure 2
Figure 3
Figure 4

Similar content being viewed by others

References

  • Ashkenazi A, Dixit VM . 1998 Science 281: 1305–1308

  • Bennett M, Macdonald K, Chan SW, Luzio JP, Simari R, Weissberg P . 1998 Science 282: 290–293

  • Chinnaiyan AM, O'Rourke K, Tewari M, Dixit VM . 1995 Cell 81: 505–512

  • Fukazawa T, Fujiwara T, Morimoto Y, Shao J, Nishizaki M, Kadowaki Y, Hizuta A, Owen-Schaub LB, Roth JA, Tanaka N . 1999 Oncogene 18: 2189–2199

  • Honda R, Yasuda H . 1999 EMBO J. 18: 22–27

  • Irmler M, Thome M, Hahne M, Schneider P, Hofmann K, Steiner V, Bodmer JL, Schroter M, Burns K, Mattmann C, Rimoldi D, French LE, Tschopp J . 1997 Nature 388: 190–195

  • Kagawa S, Fujiwara T, Hizuta A, Yasuda T, Zhang WW, Roth JA, Tanaka N . 1997 Oncogene 15: 1903–1909

  • Kanegae Y, Takamori K, Sato Y, Lee G, Nakai M, Saito I . 1996 Gene 181: 207–212

  • Kataoka T, Schroter M, Hahne M, Schneider P, Irmler M, Thome M, Froelich CJ, Tschopp J . 1998 J. Immunol. 161: 3936–3942

  • Levine AJ . 1997 Cell 88: 323–331

  • Medema JP, Scaffidi C, Kischkel FC, Shevchenko A, Mann M, Krammer PH, Peter ME . 1997 EMBO J. 16: 2749–2804

  • Muzio M, Chinnaiyan AM, Kischkel FC, O'Rourke K, Shevchenko A, Ni J, Scaffidi C, Bretz JD, Zhang M, Gentz R, Mann M, Krammer PH, Peter ME, Dixit VM . 1996 Cell 85: 817–827

  • Niwa H, Yamamura K, Miyazaki J . 1991 Gene 108: 193–200

  • Owen-Schaub LB, Zhang W, Cusack JC, Angelo LS, Santee SM, Fujiwara T, Roth JA, Deisseroth AB, Zhang WW, Kruzel E, Radinsky R . 1995 Mol. Cell. Biol. 15: 3032–3040

  • Sata M, Walsh K . 1998 J. Biol. Chem. 273: 33103–33106

  • Scaffidi C, Schmitz I, Krammer PH, Peter ME . 1999 J. Biol. Chem. 274: 1541–1548

  • Scheffner M, Nuber U, Huibregtse JM . 1995 Nature 373: 81–83

  • Schneider P, Thome M, Burns K, Bodmer JL, Hofmann K, Kataoka T, Holler N, Tschopp J . 1997 Immunity 7: 831–836

  • Shao J, Fujiwara T, Kadowaki Y, Fukazawa T, Waku T, Itoshima T, Yamatsuji T, Nishozaki M, Roth JA, Tanaka N . 2000 Oncogene 19: 726–736

  • Sheikh MS, Burns TF, Huang Y, Wu GS, Amundson S, Brooks KS, Fornace Jr AJ, el-Deiry WS . 1998 Cancer Res. 58: 1593–1598

  • Shkedy D, Gonen H, Bercovich B, Ciechanover A . 1994 FEBS Lett. 348: 126–130

  • Wu GS, el-Diery WS . 1997 Nat. Genet. 17: 141–143

  • Wu GS, Burns TF, Zhan Y, Alnemri ES, el-Deiry WS . 1999 Cancer Res. 59: 2770–2775

Download references

Acknowledgements

We thank Dr Hideo Yagita for providing KILLER/DR5 cDNA; Dr Izumu Saito for providing pCANLNL5 and AxCANCre; Dr Jun-ichi Miyazaki for providing the CAG promoter; and Monica Contreas for preparing the manuscript. This work was supported in part by grants from the Ministry of Education, Science, and Culture, Japan; and by grants from the Ministry of Health and Welfare, Japan (Health Sciences Research Grants [Research on Human Genome and Gene Therapy]).

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Toshiyoshi Fujiwara.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Fukazawa, T., Fujiwara, T., Uno, F. et al. Accelerated degradation of cellular FLIP protein through the ubiquitin-proteasome pathway in p53-mediated apoptosis of human cancer cells. Oncogene 20, 5225–5231 (2001). https://doi.org/10.1038/sj.onc.1204673

Download citation

  • Received:

  • Revised:

  • Accepted:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1038/sj.onc.1204673

Keywords

This article is cited by

Search

Quick links