Abstract
We investigated the relationship between manganese superoxide dismutase (Mn‐SOD) activity and apoptosis induced by anticancer drugs and radiation. Although the activity of copper, zinc‐SOD did not differ greatly among 9 squamous cell carcinoma (SCC) cell lines (OSC‐1 to OSC‐9), the Mn‐SOD activity did differ among the cell lines. The Mn‐SOD activity was increased by treatments with 5‐fluorouracil (5‐FU), peplomycin and 137Cs, reaching plateau levels at 12 h after treatment and then decreasing gradually. When OSC‐1 and OSC‐3, and OSC‐2 and OSC‐4 were examined as representative cell lines with low and high Mn‐SOD activity, respectively, the decrease was more prominent in OSC‐1 and OSC‐3 than in OSC‐2 and OSC‐4. The intracellular levels of superoxide and hydrogen peroxide (H2O2) were increased after treatment with the anti‐cancer agents, and the increases were larger in OSC‐1 and OSC‐3 than in OSC‐2 and OSC‐4. The decrease of mitochondrial membrane potential (Δψm) by the anticancer agents was marked in OSC‐1 and OSC‐3. Correspondingly, the release of cytochrome c, the activation of caspase‐3 and the cleavage of poly(ADP‐ribose)polymerase were stronger in OSC‐3 than in OSC‐4. In addition, apoptosis induced by the anticancer agents was prominent in OSC‐3, exhibiting a close relationship with the Δ7psi;m and the H2O2 level. These results indicate that Mn‐SOD in SCC cells modulates apoptosis induction and the inactivation of Mn‐SOD might be a promising strategy for SCC treatment.
Keywords: Mn‐SOD, Apoptosis, Reactive oxygen, Cytochrome c, Mitochondrial membrane potential
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REFERENCES
- 1).Briskin , K. B. , Fady , C. , Wang , M. and Lichtenstein , A. K.Apoptotic inhibition of head and neck squamous cell carcinoma cells by tumor necrosis factor α . Arch. Otolaryngol. Head Neck Surg. , 122 , 559 – 563 ( 1996. ). [DOI] [PubMed] [Google Scholar]
- 2).Crowe , D. L.Retinoic acid receptor β induces terminal differentiation of squamous cell carcinoma lines in the absence of cyclin‐dependent kinase inhibitor expression . Cancer Res. , 58 , 142 – 148 ( 1998. ). [PubMed] [Google Scholar]
- 3).Duffey , D. C. , Calcaterra , T. C. and Lichtenstein , A. K.Regulation of transforming growth factor‐β1‐mediated apoptosis in head and neck squamous cell carcinoma . Laryngoscope , 106 , 889 – 894 ( 1996. ). [DOI] [PubMed] [Google Scholar]
- 4).Kaufmann , S. H.Induction of endonucleolytic DNA cleavage in human acute myelogenous leukemia cells by etoposide, camptothecin, and other cytotoxic anticancer drugs: a cautionary note . Cancer Res. , 49 , 5870 – 5878 ( 1989. ). [PubMed] [Google Scholar]
- 5).Ueda , M. , Kumagai , K. , Ueki , K. , Inoki , C. , Orino , I. and Ueki , M.Growth inhibition and apoptotic cell death in uterine cervical carcinoma cells induced by 5‐fluorouracil . Int. J. Cancer , 71 , 668 – 674 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 6).Yanagihara , K. , Nii , M. , Numoto , M. , Kamiya , K. , Tauchi , H. , Sawada , S. and Seito , T.Radiation‐induced apoptotic cell death in human gastric epithelial tumor cells: correlation between mitotic death and apoptosis . Int. J. Radiat. Biol. , 67 , 677 – 685 ( 1995. ). [DOI] [PubMed] [Google Scholar]
- 7).Dewey , W. C. , Ling , C. C. and Meyn , R. E.Radiation‐induced apoptosis: relevance to radiotherapy . Int. J. Radiat. Oncol. Biol. Phys. , 33 , 781 – 796 ( 1995. ). [DOI] [PubMed] [Google Scholar]
- 8).Wang , T.‐H. , Wang , H.‐S. , Ichijo , H. , Giannakakou , P. , Fojo , T. and Wimalasena , J.Microtubule‐interfering agents activate c‐Jun N‐terminal kinase/stress‐activating protein kinase through both Ras and apoptosis signal‐regulating kinase pathway . J. Biol. Chem. , 273 , 4928 – 4936 ( 1998. ). [DOI] [PubMed] [Google Scholar]
- 9).Okamoto‐Kubo , S. , Nishio , K. , Heike , Y. , Yoshida , M. , Ohmori , T. and Saijo , N.Apoptosis induced by etoposide in small‐cell lung cancer cell lines . Cancer Chemother. Pharmacol. , 33 , 385 – 390 ( 1994. ). [DOI] [PubMed] [Google Scholar]
- 10).Ohmori , T. , Podack , E. R. , Nishio , K. , Takahashi , M. , Miyahara , Y. , Takeda , Y. , Kubota , N. , Funayama , Y. , Ogasawara , H. , Ohira , T. and Saijo , N.Apoptosis of lung cancer cells caused by some anti‐cancer agents (MMC, CPT‐11, ADM) is inhibited by Bcl‐2 . Biochem. Biophys. Res. Commun. , 192 , 30 – 36 ( 1993. ). [DOI] [PubMed] [Google Scholar]
- 11).Chen , Z. , Wang , Z. Y. and Chen , S. J.Acute promyelocytic leukemia: cellular and molecular basis of differentiation and apoptosis . Pharmacol. Ther. , 76 , 141 – 149 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 12).Nagata , S.Apoptosis by death factor . Cell , 88 , 355 – 365 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 13).Schulze‐Osthoff , K. , Krammer , P. H. and Droge , W.Divergent signalling via APO‐1/Fas and the TNF receptor, two homologous molecules involved in physiological cell death . EMBO J. , 13 , 4587 – 4596 ( 1994. ). [DOI] [PMC free article] [PubMed] [Google Scholar]
- 14).Dhein , J. , Walczak , H. , Baumler , C. , Debatin , K. M. and Krammer , P. H.Autocrine T‐cell suicide mediated by APO‐1/(Fas/CD95) . Nature , 373 , 438 – 441 ( 1995. ). [DOI] [PubMed] [Google Scholar]
- 15).Brunner , T. , Mogil , R. J. , LaFace , D. , Yoo , N. J. , Mahboubi , A. , Echeverri , F. , Martin , S. J. , Force , W. R. , Lynch , D. H. , Ware , C. F. and Green , D. R.Cell‐autonomous Fas (CD95)/Fas‐ligand interaction mediates activation‐induced apoptosis in T‐cell hybridomas . Nature , 373 , 441 – 444 ( 1995. ). [DOI] [PubMed] [Google Scholar]
- 16).Ju , S. T. , Panka , D. J. , Cui , H. , Ettinger , R. , El‐Khatib , M. , Sherr , D. H. , Stanger , B. Z. and Marshak‐Rothstein , A.Fas (CD95)/FasL interactions required for programmed cell death after T‐cell activation . Nature , 373 , 444 – 448 ( 1995. ). [DOI] [PubMed] [Google Scholar]
- 17).Enari , M. , Sakahira , H. , Yokoyama , H. , Okawa , K. , Iwamatsu , A. and Nagata , S.A caspase‐activated DNase that degrades DNA during apoptosis, and its inhibitor ICAD . Nature , 391 , 43 – 50 ( 1998. ). [DOI] [PubMed] [Google Scholar]
- 18).Mukae , N. , Enari , M. , Sakahira , H. , Fukada , Y. , Inazawa , J. , Toh , H. and Nagata , S.Molecular cloning and characterization of human caspase‐activated DNase . Proc. Natl. Acad. Sci. USA , 95 , 9123 – 9128 ( 1998. ). [DOI] [PMC free article] [PubMed] [Google Scholar]
- 19).Kojima , H. and Datta , R.Involvement of a CrmA‐insensitive ICE/Ced‐3‐like protease in ceramide‐induced apoptosis . Oncol. Res. , 8 , 497 – 501 ( 1996. ). [PubMed] [Google Scholar]
- 20).Duriez , P. J. and Shah , G. M.Cleavage of poly(ADP‐ribose)polymerase: a sensitive parameter to study cell death . Biochem. Cell Biol. , 75 , 337 – 349 ( 1997. ). [PubMed] [Google Scholar]
- 21).Rosen , A. and Casciola‐Rosen , L.Macromolecular substrates for the ICE‐like proteases during apoptosis . J. Cell. Biohem. , 64 , 50 – 54 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 22).Shimizu , S. , Eguchi , Y. , Kamiike , W. , Waguri , S. , Uchiyama , Y. , Matsudo , H. and Tsujimoto , Y.Bcl‐2 blocks loss of mitochondrial membrane potential while ICE inhibitor acts at a different step during inhibition of death induced by respiratory chain inhibitors . Oncogene , 13 , 21 – 29 ( 1996. ). [PubMed] [Google Scholar]
- 23).Kim , C. N. , Wang , X. , Huang , Y. , Ibrado , A. M. , Liu , L. , Fang , G. and Bhalla , K.Overexpression of Bcl‐X(L) inhibits Ara‐C‐induced mitochondrial loss of cytochrome c and other perturbations that activate the molecular cascade of apoptosis . Cancer Res. , 57 , 3115 – 3120 ( 1997. ). [PubMed] [Google Scholar]
- 24).Yang , J. C. and Cortopassi , G. A.Induction of the mitochondrial permeability transition causes release of the apoptogenic factor cytochrome c . Free Radic. Biol. Med. , 24 , 624 – 631 ( 1998. ). [DOI] [PubMed] [Google Scholar]
- 25).Skulachev , V. P.Cytochrome c in the apoptotic and anti‐oxidant cascades . EFBS Lett. , 423 , 275 – 280 ( 1998. ). [DOI] [PubMed] [Google Scholar]
- 26).Adachi , S. , Cross , A. R. , Babior , B. M. and Gottlieb , R. A.Bcl‐2 and the outer mitochondrial membrane in the inactivation of cytochrome c during Fas‐mediated apoptosis . J. Biol. Chem. , 272 , 21878 – 21882 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 27).Fulda , S. , Los , M. , Friesen , C. and Debatin , K. M.Chemosensitivity of solid tumor cells in vitro is related to activation of the CD95 system . Int. J. Cancer , 76 , 105 – 114 ( 1998. ). [DOI] [PubMed] [Google Scholar]
- 28).Friesen , C. , Herr , I. , Krammer , P. H. and Debatin , K. M.Involvement of the CD95 (APO‐1/Fas) receptor/ligand system in drug‐induced apoptosis in leukemia cells . Nat. Med. , 2 , 574 – 577 ( 1996. ). [DOI] [PubMed] [Google Scholar]
- 29).Fulda , S. , Sieverts , H. , Friesen , C. , Herr , I. and Debatin , K. M.The CD95 (AP‐1/Fas) system mediates drug‐induced apoptosis in neutroblastoma cells . Cancer Res. , 57 , 3823 – 3829 ( 1997. ). [PubMed] [Google Scholar]
- 30).Kayse , S. M. and Emsdie , E.Oxidative stress and heat shock induce a human gene encoding a protein tyrosine phosphatase . Nature , 359 , 644 – 647 ( 1992. ). [DOI] [PubMed] [Google Scholar]
- 31).Bartoli , G. and Galeotti , T.Growth‐related lipid peroxidation in tumor microsomal membranes and mitochondria . Biochim. Biophys. Acta , 574 , 537 – 541 ( 1979. ). [DOI] [PubMed] [Google Scholar]
- 32).Schreck , R. , Rieber , P. and Baeuerle , P. A.Reactive oxygen intermediates as apparently widely used messengers in the activation of NF‐κB transcription factor and HIV‐1 . EMBO J. , 10 , 2247 – 2258 ( 1991. ). [DOI] [PMC free article] [PubMed] [Google Scholar]
- 33).Tan , S. , Sayara , Y. , Liu , Y. , Maher , P. and Schubert , D.The regulation of the reactive oxygen species production during programmed cell death . J. Cell Biol. , 141 , 1423 – 1432 ( 1998. ). [DOI] [PMC free article] [PubMed] [Google Scholar]
- 34).Suzuki , Y. S. , Forman , H. J. and Sevanian , A.Oxidants as stimulators of signal transduction . Free Radic. Biol. Med. , 22 , 269 – 285 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 35).Wang , G. W. H.Protective roles of cytokines against radiation: induction of mitochondrial MnSOD . Biochim. Biophys. Acta , 1271 , 205 – 209 ( 1995. ). [DOI] [PubMed] [Google Scholar]
- 36).Brash , D. E. , Ziegler , A. , Jonason , A. S. , Simon , J. A. , Kunala , S. and Leffell , D. J.Sunlight and sunburn in human skin cancer: p53, apoptosis, and tumor promotion . J. Invest. Dermatol. Symp. Proc. , 1 , 136 – 142 ( 1996. ). [PubMed] [Google Scholar]
- 37).Dionisi , O. , Galeotti , T. , ter ranova , T. and Azzi , A.Superoxide radicals and hydrogen peroxide formation in mitochondria from normal and neoplastic tissues . Biochim. Biphys. Acta , 403 , 292 – 300 ( 1975. ). [DOI] [PubMed] [Google Scholar]
- 38).Alaoui , J. M. A. , Batist , G. and Lehnert , S.Radiation‐induced damage to DNA in drug‐ and radiation‐resistant sublines of a human breast cancer cell lines . Radiat. Res. , 129 , 37 – 42 ( 1992. ). [PubMed] [Google Scholar]
- 39).Oberley , L. W. , Clair , D. S. T. , Antor , A. P. and Oberley , T. D.Increase in manganese superoxide dismutase activity in the mouse heart after X‐irradiation . Arch. Biochem. Biophys. , 254 , 69 – 80 ( 1987. ). [DOI] [PubMed] [Google Scholar]
- 40).Suzuki , K. , Nakamura , M. , Hatanaka , Y. , Kayanoki , Y. , Tatsumi , H. and Taniguchi , N.Induction of apoptotic cell death in human endothelial cells treated with snake venom: implication of intracellular reactive oxygen species and protective effects of glutathione and superoxide dismutase . J. Biochem. , 122 , 1260 – 1264 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 41).Antras‐Ferry , J. , Maheo , K. , Morel , F. , Guillouzo , A. , Cillard , P. and Cillard , J.Dexamethasone differently modulates TNF‐alpha‐ and IL‐1‐beta‐induced transcription of the hepatic Mn‐superoxide dismutase gene . FEBS Lett. , 403 , 100 – 104 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 42).Fujii , J. , Makata , T. , Miyoshi , E. , Ikeda , Y. and Taniguchi , N.Induction of manganese superoxide dismutase mRNA by okadaic acid and protein synthesis inhibitors . Biochem. J. , 301 , 31 – 34 ( 1994. ). [DOI] [PMC free article] [PubMed] [Google Scholar]
- 43).Li , J. J. and Oberley , L. W.Overexpression of manganese‐containing superoxide dismutase confers resistance to cytotoxicity of tumor necrosis factor α and/or hyperthermia . Cancer Res. , 57 , 1991 – 1998 ( 1997. ). [PubMed] [Google Scholar]
- 44).Kizaki , M. , Sakashita , A. , Karmakar , A. , Lin , C.‐W. and Koeffler , H. P.Regulation of manganese superoxide dismutase and other antioxidant genes in normal and leukemic hematopoietic cells and their relationship to cytotoxicity by tumor necrosis factor . Blood , 82 , 1142 – 1150 ( 1993. ). [PubMed] [Google Scholar]
- 45).Liu , M. , Pelling , J. C. , Ju , J. , Chu , E. and Brash , D. E.Antioxidant action via p53‐mediated apoptosis . Cancer Res. , 58 , 1723 – 1729 ( 1998. ). [PubMed] [Google Scholar]
- 46).Õyanagi , Y.Reevaluation of assay methods and establishment of kit for superoxide dismutase activity . Anal. Biochem. , 142 , 290 – 296 ( 1984. ). [DOI] [PubMed] [Google Scholar]
- 47).Tang , T. G. , Zhu , L. L. Z. and Joshi , B.Apoptosis in the absence of cytochrome c accumulated in the cytosol . Biochem. Biophys. Res. Commun. , 242 , 380 – 384 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 48).Lowry , O. H. , Rosebrough , N. J. , Farr , A. L. and Randall , R. J.Protein measurement with the Folin phenol reagent . J. Biol. Chem. , 193 , 265 – 275 ( 1951. ). [PubMed] [Google Scholar]
- 49).Chirgwin , J. M. , Przybula , A. E. , MacDonald , R. J. and Rutter , W. J.Isolation of biologically active ribonucleic acid from sources enriched in ribonuclease . Biochemistry , 18 , 5294 – 5299 ( 1979. ). [DOI] [PubMed] [Google Scholar]
- 50).Hirota , H. , Takahashi , A. , Kobayashi , S. , Yonehara , S. , Sawai , H. , Okazaki , T. , Yamamoto , K. and Sasada , M.Caspases are activated in a branched protease cascade and control distinct downstream processes in Fas‐induced apoptosis . J. Exp. Med. , 187 , 587 – 600 ( 1998. ). [DOI] [PMC free article] [PubMed] [Google Scholar]
- 51).Scaffidi , G. , Fulda , S. , Srinivasan , A. , Friesen , C. , Li , F. , Tomaselli , K. J. , Debatin , K. M. , Krammer , P. H. and Peter , M. E.Two CD95 (APO‐1/Fas) signaling pathways . EMBO J. , 17 , 1665 – 1687 ( 1998. ). [DOI] [PMC free article] [PubMed] [Google Scholar]
- 52).Guidot , D. M.Endotoxin pretreatment in vivo increases the mitochondrial respiratory capacity in rat hepatocytes . Arch. Biochem. Biophys. , 354 , 9 – 17 ( 1998. ). [DOI] [PubMed] [Google Scholar]
- 53).Li , P. , Nijhawan , D. , Budihardjo , I. , Srinivasula , S. M. , Ahmad , M. , Alnemri , E. S. and Wang , X.Cytochrome c and dATP‐dependent formation of Apaf‐1/caspase‐9 complex initiates an apoptotic protease cascade . Cell , 91 , 479 – 489 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 54).Liu , X. , Kim , C. N. , Yang , J. , Jemmerson , R. and Wang , X.Induction of apoptotic program in cell‐free extracts: requirement for dATP and cytochrome c . Cell , 86 , 147 – 157 ( 1996. ). [DOI] [PubMed] [Google Scholar]
- 55).Schulze‐Osthoff , K. , Los , M. and Baeuerle , P. A.Redox signalling by transcription factor NF‐kappa B and AP‐1 in lymphocytes . Biochem. Pharmacol. , 50 , 735 – 741 ( 1995. ). [DOI] [PubMed] [Google Scholar]
- 56).Li , J. J. , Oberley , L. W. , Clair , D. K. St. , Ridnour , L. A. and Oberlay , T. D.Phenotypic changes induced in human breast cancer cells by overexpression of manganese‐containing superoxide dismutase . Oncogene , 10 , 1989 – 2000 ( 1995. ). [PubMed] [Google Scholar]
- 57).Yang , J. , Liu , X. , Bhalla , K. , Kim , C. N. , Ibrado , A. M. , Cai , J. , Peng , T.‐I. , Jones , D. P. and Wang , X.Prevention of apoptosis by Bcl‐2: release of cytochrome c from mitochondria blocked . Science , 275 , 1129 – 1132 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 58).Yoneda , K. , Yamamoto , T. and Osaki , T.p53‐ and p21‐independent apoptosis of squamous cell carcinoma cells induced by 5‐fluorouracil and radiation . Oral Oncol. , 34 , 529 – 537 ( 1998. ). [DOI] [PubMed] [Google Scholar]
- 59).Chanhan , D. , Pandey , P. , Ogata , A. , Teoh , G. , Krett , N. , Halgren , R. , Rosen , S. , Kufe , D. , Kharbanda , S. and Anderson , K.Cytochrome c‐dependent and ‐independent induction of apoptosis in multiple myeloma cells . J. Biol. Chem. , 272 , 29995 – 29997 ( 1997. ). [DOI] [PubMed] [Google Scholar]
- 60).Pastorino , J. G. , Chen , S.‐T. , Tafani , M. , Snyder , J. W. and Farber , J. L.The overexpression of Bax produces cell death upon induction of the mitochondrial peameability transition . J. Biol. Chem. , 273 , 7770 – 7775 ( 1998. ). [DOI] [PubMed] [Google Scholar]
- 61).Kuwana , T. , Smith , J. J. , Muzio , M. , Dixit , V. , Newmeyer , D. D. and Kornbluth , S.Apoptosis induction by caspase‐8 is amplified through the mitochondrial release of cytochrome c . J. Biol. Chem. , 273 , 16589 – 16594 ( 1998. ). [DOI] [PubMed] [Google Scholar]