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Original Article

Endogenous tumour necrosis factor regulates heat-inducible heat shock protein 72 synthesis

, , , , , , , , & show all
Pages 309-317 | Received 15 Aug 1997, Accepted 22 Jan 1998, Published online: 09 Jul 2009

References

  • Carswell E. A., Old L. J., Kassel R. L., Green S., Fiore N., Williamson B. An endotoxin-induced serum factor that causes necrosis of tumors. Proceedings of the National Academy of Science, USA 1975; 72: 3666–3670
  • Ciocca D. R., Fukuda S. A. W., Lock-Lim S., Toft D. O., Welch W. J., McGuire W. L. Response of human breast cancer cells to heat shock and chemotherapeutic drugs. Cancer Research 1992; 52: 3647–3654
  • Ellis R. J., Vies V. D. Molecular chaperones. Annual Review of Biochemistry 1991; 60: 321–347
  • Fisher A. M., Ferrario A., Gomer C. J. Adriamycin resistance in Chinese hamster fibroblasts following oxidative stress induced by photodynamic therapy. Photochemistry and Photobiology 1993; 58: 581–588
  • Helson L., Helson C., Green S. Effect of murine tumor necrosis factor on heterotransplanted human tumors. Experimarntal Cellular Biology 1979; 47: 53–60
  • Himeno T., Watanabe N., Yamauchi N., Maeda M., Tsuji Y., Okamoto T., Neda H., Niitsu Y. Expression of endogenous tumor necrosis factor as a protective protein against the cytotoxicity of exogenous tumor necrosis factor. Cancer Research 1990; 50: 4941–41945
  • Himeno T., Watanabe N., Yamauchi N., Maeda M., Okatmoto T., Tsuji N., Tsuji Y., Akiyama S., Sasaki H., Niitsu Y. Induction of synthesis of manganous superoxide dismutase in L-M(pNTnF) cells carrying an inducible TNF gene. International Journal of Cancer 1992; 50: 458–462
  • Huber S. A. Heat-shock protein induction in adriamycin and picornavirus-infected cardiocytes. Laboratory Investigation 1992; 67: 219–224
  • Jaattela M., Wissing D., Bauer P., Li G. C. Major heat shock protein hsp70 protects tumor cells from tumor necrosis factor cytotoxicity. EMBO Journal 1992; 11: 3507–3512
  • Jaattela M. Overexpression of major heat shock protein hsp70 inhibits tumor necrosis factor-induced activation of phospholipase A2. J. Immunology 1993; 151: 4286–4294
  • Kobayashi D., Watanabe N., Yamauchi N., Tsuji N., Sato T., Niitsu Y. Endogenous tumor necrosis factor as a predictor of doxorubicin sensitivity in leukemic patients. Blood 1997; 89: 2472–2479
  • Laemmli U. K. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 1970; 227: 680–685
  • Liu R. Y., Li X., Li L., Li G. Expression of human hsp70 in rat fibroblasts enhances cell survival and facilitates recovery from translation and transcriptional inhibition following heat shock. Cancer Research 1992; 52: 3667–3673
  • Maeda M., Watanabe N., Okamoto T., Tsuji N., Niitsu Y. Endogenous tumor necrosis factor functions as a resistant factor against adriamycin. International Journal of Cancer 1994; 58: 376–379
  • Niitsu Y., Watanabe N., Neda H., Yamauchi N., Maeda M., Sone H., Urushizaki I. Induction of synthesis of tumor necrosis factor in human and murine cell lines by exogenous recombinant human tumor necrosis factor. Cancer Research 1988a; 48: 5407–5410
  • Niitsu Y., Watanabe N., Umeno H., Sone H., Neda H., Yamauchi N., Maeda M., Urushizaki I. Synergisitic effects of recombinant human tumor necrosis factor and hyperthermia on in vitro cytotoxicity and artificial metastasis. Cancer Research 1988b; 48: 654–657
  • Okamoto T., Watanabe N., Yamauchi N., Tsuji Y., Tsuji N., Itoh Y., Neda H., Niitsu Y. Endogenous tumor necrosis factor exerts its protective function intracellularly against the cytotoxicity of exogenous tumor necrosis factor. Cancer Research 1992; 52: 5278–5281
  • Puck T. T., Marcus P. I. Action of x-rays on mammalian cells. Journal of Experimental Medicine 1956; 103: 653–669
  • Sugarman B. J., Aggarwal B. B., Hass P. E., Figari I. S., Palladino M. A., Jr., Shepard H. M. Recombinant human tumor necrosis factor a: effects on proliferation of normal and transformed cells. in vitro. Science 1988; 230: 943–945
  • Tsuji Y., Watanabe N., Okamoto T., Tsuji N., Sasaki H., Akiyama S., Yamauchi N., Niitsu Y. Endogenous tumor necrosis factor functions as a resistant factor against hyperthermic cytotoxiscity. Cancer Research 1992; 52: 6258–6262
  • Watanabe N., Niitsu Y., Neda H., Sone H., Yamauchi N., Umetsu T., Urushizaki I. Antitumor effect of tumor necrosis factor against various primarily cultured human cancer cells. Japanese. Journal of Cancer Research 1985; 76: 1115–1119
  • Watanabe N., Kuriyama H., Sone H., Neda H., Yamauchi N., Maeda M., Niitsu Y. Continuous internalization of tumor necrosis factor receptor in a human myosarcoma cell line. Journal of Biological Chemistry 1988a; 263: 10262–10266
  • Watanabe N., Niitsu Y., Umeno H., Kuriyama H., Neda H., Yamauchi N., Maeda M., Urushizaki I. Toxic effect of tumor necrosis factor on tumor vasculature in mice. Cancer Research 1988b; 48: 2179–2183
  • Watanabe N., Niitsu Y., Umeno H., Sone H., Neda H., Yamauchi N., Maeda M., Urishizaki I. Synergisitc cytotoxic and antitumor effects of recombinant human tumor necrosis factor and hyperthermia. Cancer Research 1988c; 48: 650–653
  • Watanabe N., Akiyama S., Tsuji N., Sasaki H., Yamauchi N., Okamoto T., Kobayashi D., Niitsu Y. Induction of synthesis of heat shock protein 72 in tumor necrosis factor gene transduced cells. Japanese Journal of Cancer Research 1994; 85: 997–999
  • Watanabe N., Tsuji N., Tsuji Y., Sasaki H., Okamoto T., Akiyama S., Koyabashi D., Sato T., Yamauchi N., Niitsu Y. Endogenous tumor necrosis factor inhibit the cytotoxicity of exogenous tumor necrosis factor and adriamycin in pancreatic carcinoma cells. Pancreas 1996; 13: 395–400
  • Watanabe N., Tsuji N., Akiyama S., Sasaki H., Okamoto T., Kobayashi D., Sato T., Hagino T., Yamauchi N., Niitsu Y., Nakai A., Nagata K. Induction of heat shock protein (HSP) 72 synthesis by endogenous tumor necrosis factor via enhancement of the heat shock element-binding activity of heat shock factor 1. European Journal of Immunology 1997; 27: 2830–2834
  • Whelan R. D., Hill B. T. Differential expression of steroid receptors, hsp27, and pS2 in a series of drug resistant human breast tumor cell lines derived following exposure to antitumor drugs or to fractionated X-irradiation. Breast Cancer Research Treatment 1993; 26: 23–29
  • Yamauchi N., Kuriyama H., Watanabe N., Neda H., Maeda M., Niitsu Y. Intracellular hydroxyl radical production induced by recombinant human tumor necrosis factor and its implication in the killing of tumor cells. in vitro. Cancer Research 1989; 49: 1671–1675
  • Yamauchi N., Watanabe N., Kuriyama H., Neda H., Maeda M., Himeno T., Tsuji Y., Niitsu Y. Suppressive effects of intracellular glutathione on hydroxyl radical production induced by tumor necrosis factor. International Journal of Cancer 1990; 46: 884–888

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