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Ergothioneine Contents in Fruiting Bodies and Their Enhancement in Mycelial Cultures by the Addition of Methionine

  • Lee, Wi-Young (Division of Biotechnology, Korea Forest Research Institute) ;
  • Park, Eung-Jun (Division of Biotechnology, Korea Forest Research Institute) ;
  • Ahn, Jin-Kwon (Division of Biotechnology, Korea Forest Research Institute) ;
  • Ka, Kang-Hyeon (Division of Wood Chemistry and Microbiology, Korea Forest Research Institute)
  • Published : 2009.03.31

Abstract

The levels of ergothioneine (ERG), which have been shown to act as an excellent antioxidant, were determined in both fruiting bodies and mycelia of various mushroom species. We found that ERG accumulated at different levels in fruiting bodies of mushrooms and showed up to a 92.3-fold difference between mushrooms. We also found that ERG accumulated at higher levels in mycelia than in fruiting bodies of economically important mushroom species such as Ganoderma neo-japonicum, G. applanatum and Paecilomyces tenuipes. The addition of 2 mM methionine (Met) to mycelial culture medium increased the ERG contents in most mushroom species tested, indicating that Met is a good additive to enhance the ERG levels in a variety of mushroom species. Taking these results into consideration, we suggest that the addition of Met to the mycelial culture medium is an efficient way to enhance the antioxidant properties in economically important mushroom species.

Keywords

References

  1. Akanmu, D., Cecchini, R., Aruoma, O. I. and Halliwell, B. 1991. The antioxidant action of ergothioneine. Arch. Biochem. Biophys. 288:10-16 https://doi.org/10.1016/0003-9861(91)90158-F
  2. Arduino A., Eddy, L. and Hochstein, R. 1990. The reduction of ferryl myoglobin by ergothioneine: a novel function for ergothioneine. Arch. Biochem. Biophys. 281:41-43 https://doi.org/10.1016/0003-9861(90)90410-Z
  3. Aruoma, O. I., Spencer, J. P. E. and Mahmood, N. 1999. Protection against oxidative damage and cell death by the natural antioxidant ergothioneine. Food Chem. Toxicol. 37:1043-1053 https://doi.org/10.1016/S0278-6915(99)00098-8
  4. Aruoma, O. I., Whiteman, M. E. and Halliwell, B. 1997. Antioxidant action of ergothioneine: assessment of its ability to scavenge peroxynitrite. Biochem. Biophys. Res. Commun. 231:389-391 https://doi.org/10.1006/bbrc.1997.6109
  5. Askari, A. and Melville, D. B. 1962. The reaction sequence in ergothioneine biosynthesis: hercynine as an intermediate. J. Biol. Chem. 237:1615-1618
  6. Asmus, K.-D., Bensasson, R. V., Bernier, J.-L., Houssin, R. and Land, E. J. 1996. One-electron oxidation of ergothioneine and analogues investigated by pulse radiolysis: redox reaction involving ergothioneine and vitamin C. Biochem. J. 315:625-629 https://doi.org/10.1042/bj3150625
  7. Cheung, L. M., Cheung, P. C. K. and Ooi, V. E. C. 2003. Antioxidant activity and total phenolics of edible mushroom extracts. Food Chem. 81:249-255 https://doi.org/10.1016/S0308-8146(02)00419-3
  8. Cheung, L. M and Cheung, P. C. K. 2005. Mushroom extracts with antioxidant activity against lipid peroxidation. Food Chem. 89:403-409 https://doi.org/10.1016/j.foodchem.2004.02.049
  9. Chihara, G., Himuri, J., Maeda, Y. Y., Arai, Y. and Fukuoka, F. 1970. Fractionation and purification of the polysaccharides with marked antitumor activity, especially lentinan, from Lentinus edodes (Berk.) Sing. (an edible mushroom). Cancer Res. 30:2776-2781
  10. Dubost, N. J., Beelman, R. B., Peterson, D. and Royse, D. J. 2006. Identification and quantification of ergothioneine in cultivated mushrooms by liquid chromatography-mass spectroscopy. Int. J. Med. Mushrooms 8:215-222 https://doi.org/10.1615/IntJMedMushr.v8.i3.30
  11. Fu, H. Y. and Shieh, D. E. 2002. Antioxidant and free radical scavenging activities of edible mushrooms. J. Food Lipids 9:35-46 https://doi.org/10.1111/j.1745-4522.2002.tb00206.x
  12. Hartman, Z. and Hartman, P. E. 1987. Interception of some directacting mutagens by ergothioneine. Environ. Mol. Mutagen. 10:3-15 https://doi.org/10.1002/em.2850100103
  13. Hertog, M. G. L., Feskends, E. J. M., Hollman, P. C. H., Katan, M. B. and Kromhout, D. 1993. Dietary antioxidant flavonoids and risk of coronary heart disease: the Zutphen elderly study. Lancet 342:1007-1011 https://doi.org/10.1016/0140-6736(93)92876-U
  14. Gibbs, P. A., Seviour, R. J. and Schmid, F. 2000. Growth of filamentous fungi in submerged culture: problems and possible solutions. Crit. Rev. Biotechnol. 20:17-48 https://doi.org/10.1080/07388550091144177
  15. Jang, J.-H., Aruoma, O. I., Jen, L.-S., Chung, H. Y. and Surh, Y.-J. 2004. Ergothioneine rescues PC12 cells from beta-amyloidinduced apoptotic death. Free Radic. Biol. Med. 36:288-299 https://doi.org/10.1016/j.freeradbiomed.2003.11.005
  16. Kaneko, I., Takeuchi, Y., Yamaoka, Y., Tanaka, Y., Fukuda, T., Fukumori, Y., Mayumi, T. and Hama, T. 1980. Quantitative determination of ergothioneine in plasma and tissues by TLCdensitometry. Chem. Pharm. Bull. 28:3093-3097 https://doi.org/10.1248/cpb.28.3093
  17. Koh, J. H., Kim, J. M., Chang, U. J. and Suh, H. J. 2003. Hypocholesterolemic effect of hot-water extract from mycelia of Cordyceps sinensis. Biol. Pharm. Bull. 26:84-87 https://doi.org/10.1248/bpb.26.84
  18. Kim, S. W., Hwang, H. J., Xu, C. P., Sung, J. M., Choi, J. W. and Yun, J. W. 2003. Optimization of submerged culture process for the production of mycelial biomass and exo-polysaccharides by Cordyceps militaris C738. J. Appl. Microbiol. 94:120-126
  19. Lee, E. J. and Jang, H. D. 2004. Antioxidant activity and protective effect of five edible mushrooms on oxidative DNA damage. Food Sci. Biotechnol. 13:443-449
  20. Lee, I. S. and Nishizawa, A. 2003. Polyozellus multiplex, a Korean wild mushroom, as a potent chemopreventive agent against stomach cancer. Life Sci. 73:3225-3234 https://doi.org/10.1016/j.lfs.2003.06.006
  21. Lee, W. Y., Park, E.-J. and Ahn, J. K. 2009. Supplementation of methionine enhanced the ergothioneine accumulation in the Ganoderma neo-japonicum Mycelia. Appl. Biochem. Biotech. DOI 10.1007/s12010-008-8322-0.
  22. Lee, W. Y., Park, Y., Ahn, J. K., Ka, K. H. and Park, S. Y. 2007. Factors influencing the production of endopolysaccharide and exopolysaccharide from Ganoderma applanatum. Enzyme Microb. Tech. 40:249-254 https://doi.org/10.1016/j.enzmictec.2006.04.009
  23. Lin, J.-M., Lin, C.-C., Chen, M.-F., Ujiie, T. and Takada, A. 1995. Radical scavanger and antihepatotoxic activity of Ganoderma formosanum, Ganoderma lucidum and Ganoderma neojaponicum. J. Ethnopharmacol. 47:33-41 https://doi.org/10.1016/0378-8741(95)01251-8
  24. Mau, J. L., Lin, H. C. and Song, S. F. 2002. Antioxidant properties of several specialty mushrooms. Food Res. Int. 35:519-526 https://doi.org/10.1016/S0963-9969(01)00150-8
  25. Melville, D. B., Horner, W. H., Otken, C. C. and Ludwig, M. L. 1955. Studies on the origin of ergothioneine in animals. J. Biol. Chem. 213:61-68
  26. Mitsuyama, H. and May, J. M. 1999. Uptake and antioxidant effects of ergothioneine in human erythrocytes. Clin. Sci. 97:407-411 https://doi.org/10.1042/CS19990111
  27. Mondino, A., Bongiovanni, G., Fumero, S. and Rossi, L. 1972. An improved method of plasma deproteination with sulphosalicylic acid for determining amino acids and related compounds. J. Chromatogr. 74:255-263 https://doi.org/10.1016/S0021-9673(01)86154-9
  28. Paterson, R. R. 2006. Ganoderma-a therapeutic fungal biofactory. Phytochem. 67:1985-2001 https://doi.org/10.1016/j.phytochem.2006.07.004
  29. Pinheiro, F., Faria, R., de Camargo, J. L. V., Spinardi-Barbisan, A. L. T., da Eira, A. F. and Barbisan, L.F. 2003. Chemoprevention of preneoplastic liver foci development by dietary mushroom Agaricus blazei Murrill in the rat. Food Chem. Toxicol. 41:1543-1550 https://doi.org/10.1016/S0278-6915(03)00171-6
  30. Rice-Evans, C., Miller, N. J. and Paganga, G. 1996. Structureantioxidant activity relationships of flavonoids and phenolic acids. Free Rad. Biol. Med. 20:933-956 https://doi.org/10.1016/0891-5849(95)02227-9
  31. Shih, I.-L., Tsai, K.-L. and Hsieh, C. 2007. Effects of culture conditions on the mycelial growth and bioactive metabolite production in submerged culture of Cordyceps militaris. Biochem. Eng. J. 33:193-201 https://doi.org/10.1016/j.bej.2006.10.019
  32. Tabata, K., Itoh, W., Kojima, T., Kawabate, S. and Misaki, K. 1981. Ultrasonic degradation of schizophyllan, an antitumor polysaccharide produced by Schizophyllum commune Fries. Carbohyd. Res. 89:121-135 https://doi.org/10.1016/S0008-6215(00)85234-9
  33. Wang, H. X., Ng, T. B., Ooi, V. E. C., Liu, W. K. and Chang, S. T. 1996. A polysaccharidepeptide complex from cultured mycelia of the mushroom Tricholoma mongolicum with immunoenhancing and antitumor activities. Biochem. Cell Biol. 74:95-100 https://doi.org/10.1139/o96-010
  34. Yang, J. H., Lin, H. C. and Mau, J. L. 2002. Antioxidant properties of several comercial mushrooms. Food Chem. 77:229-235 https://doi.org/10.1016/S0308-8146(01)00342-9

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