DOI QR코드

DOI QR Code

Zanthoxylum schinifolium잎의 methylene chloride 추출물의 화학적 조성 및 암세포에 대한 세포자살 유도활성과 그 작용기전

Chemical Composition and Antitumor Apoptogenic Activity of Methylene Chloride Extracts from the Leaves of Zanthoxylum schinifolium

  • 김준석 (경북대학교 자연과학대학 미생물학과 면역생물학연구실) ;
  • 전도연 (경북대학교 유전공학 연구소) ;
  • 우미희 (약학과, 약학대학, 대구가톨릭대학교) ;
  • 이인구 (경북대학교 농업생명과학대학 응용생명과학부) ;
  • 김영호 (경북대학교 자연과학대학 미생물학과 면역생물학연구실)
  • Kim Jun-Seok (Department of Microbiology, College of Natural Sciences, Kyungpook National University) ;
  • Jun Do-Youn (Institute of Genetic Engineering Kyungpook National University) ;
  • Woo Mi-Hee (Department of Pharmacy, College of Pharmacy, Catholic University of Daegu) ;
  • Rhee In-Koo (Department of Agricultural Chemistry, College of Agricultural Life Sciences, Kyungpook National University) ;
  • Kim Young-Ho (Department of Microbiology, College of Natural Sciences, Kyungpook National University)
  • 발행 : 2006.06.01

초록

식용 및 약용으로 이용되는 산초 (Zanthoxylum schinifolium) 잎에 함유된 항암활성 성분을 분리하기 위하여 산초잎을 유기용매로 추출하여, 각 추출물의 암세포에 대한 독성 및 세포자살 유도 활성을 조사하였다. Methanol, methylene chloride, ethyl acetate, n-butanol로 추출한 각 추출물의 세포 독성을 인체 급성백혈병 Jurkat T 세포주, estrogen receptor-positive 유방암 세포주 MDA 361과 estrogen receptor-negative 세포주 MDA 438를 대상으로 조사한 결과, 이들 암세포주에 대한 세포독성이 methylene chloride 추출물 (SL-14)에서 주로 확인되었다. Methylene chloride 추출물 (SL-14)의 Jurkat T세포주에 대한 세포독성의 기전은 mitochondria로부터cytochrome c 방출, 이에 뒤이은 caspase-9 및 caspase-3의 활성화, PARP 분해, jnternucleosomal DNAfragmentation등의 일련의 생화학적 과정을 통해 유도되며 또한 Bcl-xL의 ectopic overexpression에 의해서는 negative regulation되는 세포자살임을 확인하였다. 또한 SL-14를 GC-MS 분석하여, 9,19-cyclolanost-24-en-3-ol (15.1%), 2-a-methyl-17, b-hop-21-ene (15.1%), 15-methyl-2,3-dihydro-1H benzazepin (11.95%), phytol (10.38%), lupeol (9.92%), 12-methylbenzofuran (8.23%) 등을 포함한 22가지의 구성성분과 그 조성비를 확인하였다. 이상의 연구결과들은 식용 산초잎에 함유된 항암 활성으로서의 세포자살유도 활성의 규명과 이해에 유익하게 활용될 것으로 기대된다.

To understand antitumor activity of Zanthoxylum schinfolium, which has been used as an aromatic and medicinal plant in Korea, the cytotoxic effect of various organic solvent extracts of its leaves on human tumor cells were investigated. Among these extracts such as methanol extract (SL-13), methylene chloride extract (SL-14), ethyl acetate extract (SL-15), n-butanol extract (SL-16), and residual fraction (SL-17), SL-14 appeared to contain the most cytotoxic activity against leukemia and breast cancer cells tested. The methylene chloride extra.1 (SL-14) possessed an apoptogenic activity causing apoptotic DNA fragmentation of human acute leukemia Jurkat T cells via mitochondrial cytochrome c release into cytoplasm, subsequent activation of caspase-9 and caspase-3, and cleavage of PARP, which could be negatively regulated by antiapoptotic protein Bcl-xL. The GC-MS analysis of SL-14 revealed that the twenty-two ingredients of SL-14 were 9,19-cyclolanost-24-en-3-ol (15.1%), 2-a-methyl-17, b-hop-21-ene (15.1%), 15-methyl-2,3-dihydro-1H benzazepin (11.95%), phytol (10.38%), lupeol (9.92%), 12-methylbenzofuran (8.23%), hexadecanoic acid (5.96%), cis,cis,cis-9,12,15-octadecatrienoic acid-methyl-ester (5.49%), 9,12,15-octadecatrienoic acid-methylester (3.59%), 15-methyl-4-(1-methylethylidene)-2-(4-nitrophenyl) (3.36%), hexadecanoic acid methyl ester (1.93%), vitamine E (1.88%), beta-amyrin (0.96%), and auraptene (0.89%). These results demonstrate that the cytotoxicity of the methylene chloride extract of the leaves of Z. schinifolium toward Jurkat T cells is mainly attributable to apoptosis mediated by mitochondria-dependent caspase cascade regulated by Bcl-xL, and provide an insight into the mechanism underlying antitumor activity of the edible plant Z. schinifolium.

키워드

참고문헌

  1. Ashkenazi, A., and V. M. Dixit. 1999. Apoptosis control by death and decoy receptors. Current Opinion in Cell Biology 11, 255-260 https://doi.org/10.1016/S0955-0674(99)80034-9
  2. Baik, S. Y., K. H. Koh, S. M. Beak, S. H. Pa and J. A. Kim. 2005. The essential oils from Zanthoxylum schinifolium pericarp induce apoptosis of HepG2 human hepatoma cells through increased production of reactive oxygen species. Biological Pharmaceutical Bulletin 28, 802-807 https://doi.org/10.1248/bpb.28.802
  3. Chang, C.T., S. L. Doong, I. L. Tsai and I. -S. Chen. 1997. Coumarins and anti-HBV constituents from Zanthoxylum schinifolium. Phytochemistry 45, 1419-1422 https://doi.org/10.1016/S0031-9422(97)89023-1
  4. Cheng, M. J., C. H. Yang, W. Y. Lin, I. L. Tsai and I. S. Chen. 2002. Chemical constituents from the leaves of Zanthoxylum schinifolium. Journal of Chinese Chemical Society 49, 125-128 https://doi.org/10.1002/jccs.200200021
  5. Chen, I. S., Y. C. Lin, I. L. Tsai, C. M. Teng, F. N. Ko, T. Ishikawa and H. Ishii. 1995. Coumarins and anti-platelet aggregation constituents from Zanthoxylum schinifolium. Phytochemistry 39, 1091-1097 https://doi.org/10.1016/0031-9422(95)00054-B
  6. Elinos-Baez, C.H., F. Leon and F. Santos. 2005. Effects of coumarin and 7 OH-coumarin on Bcl-2 and Bax expression in two human lung cancer lines in vitro, Cell Biology International 29, 703-708 https://doi.org/10.1016/j.cellbi.2005.04.003
  7. Jo, Y. S., D. T. L. Huong, K. H. Bae, M. K. Lee and Y. H. Kim. 2002. Monoamine oxidase inhibitory coumarin from Zanthoxylum schinifolium. Planta Medica 68, 84-85 https://doi.org/10.1055/s-2002-20056
  8. Jun, D. Y., S. W. Rue, K. H. Han, D. Taub, Y. S. Lee, Y. S. Bae and Y. H. Kim. 2003. Mechanism underlying cytotoxicity of thialysine, lysine analog, toward human acute leukemia Jurkat T cells. Biochemical Pharmacology 66, 2291-2300 https://doi.org/10.1016/j.bcp.2003.08.030
  9. Kim, Y. H., J. J. Proust, M. J. Buchholz, F. J. Chrest, A. A. Nordin. 1992. Expression of the murine homologue of the cell cycle control protein $p34^{cdc2}$ in T lymphocytes. Journal of Immunology 149, 17-23
  10. Lazebnik, Y.A., S. H. Kaufmann, S. Desnoyers, G. G. Poirer, W. C. Earnshaw. 1994. Cleavage of poly (ADPribose) polymerase by a proteinase with properties like ICE. Nature 371, 346-347 https://doi.org/10.1038/371346a0
  11. Lee, J.W. 1998. Volatile flavor components of Korean sancho fruit and tree (Zanthoxylum schinifolium). Sikpum Yongyang Hakhoechi 7, 493-498
  12. Min, K. H. 1998. Antifungal activity of the extracts of Zanthoxylum schinifolium Sieb. et Zucc. against Dermatophytes. Mokchae Konghak 26, 78-85
  13. Mun, S. I., H. S. Ryu and J. S. Choi. 1997. Inhibition effects of Zanthoxylum schinifolium and its active principle on lipid peroxidation and liver damage in carbon tetrachloridetreated mice. Hanguk Sikpum Yongyang Kwahak Hoechi 26, 943-951
  14. Mun, S. I., H. S. Ryu, H. J. Lee and J. S. Choi 1994. Further screening for antioxidant activity of vegetable plants and its active principles from Zanthoxylum schinifolium. Hanguk Yongyang Siklyong Hakhoechi 23, 466-471
  15. Nagata, S. 1997. Apoptosis by death factor. Cell 88, 355-365 https://doi.org/10.1016/S0092-8674(00)81874-7
  16. Sun, X. M., M. MacFarlane, J. Zhuang, B. B. Wolf, D. R. Green, G. M. Cohen. 1999. Distinct caspase cascades are initiated in receptor-mediated and chemical-induced apoptosis. Journal of Biological Chemistry 274, 5053-5060 https://doi.org/10.1074/jbc.274.8.5053
  17. Tsai, I. L., W. Y. Lin, C. M. Teng, T. Ishikawa, S. L. Doong, M. W. Huang, Y. C. Chen and I. S. Chen. 2000. Coumarins and antiplatlet constituents from the root bark of Zanthoxylum Schinifolium. Planta Medica 66, 618-623 https://doi.org/10.1055/s-2000-8648
  18. Tsai, I. L., W. Y. Lin, C. T. Chang and I. -S. Chen. 1998. Peroxycoumarius from the root bark of Zanthoxylum schihifolium. Journal of Chinese Chemical Society 45, 99-101 https://doi.org/10.1002/jccs.199800017

피인용 문헌

  1. Zanthoxylum schinifolium enhances the osteogenic potential of periodontal ligament stem cells vol.51, pp.2, 2015, https://doi.org/10.1007/s11626-014-9824-4
  2. A new cytotoxic coumarin, 7-[(E)-3′,7′-dimethyl-6′-oxo-2′,7′-octadienyl] oxy Coumarin, from the leaves of Zanthoxylum schinifolium vol.34, pp.5, 2011, https://doi.org/10.1007/s12272-011-0504-6
  3. Apoptosis of Human Jurkat T Cells Induced by the Methylene Chloride Extract from the Stems of Zanthoxylum schinifolium is Associated with Intrinsic Mitochondria-Dependent Activation of Caspase Pathway vol.18, pp.11, 2008, https://doi.org/10.5352/JLS.2008.18.11.1499
  4. Anti-inflammatory terpenylated coumarins from the leaves of Zanthoxylum schinifolium with α-glucosidase inhibitory activity vol.70, pp.2, 2016, https://doi.org/10.1007/s11418-015-0957-x