Piotrowska-Kempisty Hanna, Klupczyńska Agnieszka, Trzybulska Dorota, Kulcenty Katarzyna, Sulej-Suchomska Anna Maria, Kucińska Małgorzata, Mikstacka Renata, Wierzchowski Marcin, Murias Marek, Baer-Dubowska Wanda, Kokot Zenon, Jodynis-Liebert Jadwiga
Department of Toxicology, Poznan University of Medical Sciences, Dojazd 30 St., PL-60-631 Poznan, Poland.
Department of Inorganic and Analytical Chemistry, Poznan University of Medical Sciences, Grunwaldzka 6 St., PL-60-780 Poznan, Poland.
Toxicol Lett. 2017 Feb 5;267:59-66. doi: 10.1016/j.toxlet.2016.12.018. Epub 2016 Dec 31.
The role of CYP1A1 and CYP1B1 enzymes in the biotransformation and biological activity of the methylated resveratrol analogue, 3,4,5,4'-tetramethoxystilbene (DMU-212) is still elusive. Our recently published data have shown that one of the metabolites of DMU-212, 3'-hydroxy-3,4,5,4'-tetramethoxystilbene (DMU-214) exerts more potent cytotoxic effects in A-2780 ovarian cancer cell line, as compared to the parent compound. Hence, this study aims to elucidate whether the biological activity of DMU-212 is related to its biotransformation to DMU-214. Furthermore, we aimed to assess which enzymes of CYP1 family are involved in the biotransformation of DMU-212. The human ovarian cancer cell lines A-2780, A-2780CYP1A1(-) and non-cancerous human ovarian surface epithelial (HOSE) cells were employed in the present study. In contrary to other authors' suggestions we have found that CYP1A1 is the major enzyme of CYP1 family involved in the metabolic activation of DMU-212. Since the distinctly weaker anti-proliferative effects of DMU-212 against HOSE and A-2780CYP1A1(-) cells have been associated with the lack of the expression of CYP1A1, we suggest that the biological activity of the parent compound may be related to its metabolic activation to DMU-214 and the level of this enzyme.
细胞色素P450 1A1(CYP1A1)和细胞色素P450 1B1(CYP1B1)酶在甲基化白藜芦醇类似物3,4,5,4'-四甲氧基二苯乙烯(DMU-212)的生物转化及生物活性中所起的作用仍不清楚。我们最近发表的数据表明,DMU-212的一种代谢产物3'-羟基-3,4,5,4'-四甲氧基二苯乙烯(DMU-214)与母体化合物相比,在A-2780卵巢癌细胞系中具有更强的细胞毒性作用。因此,本研究旨在阐明DMU-212的生物活性是否与其向DMU-214的生物转化有关。此外,我们旨在评估CYP1家族的哪些酶参与了DMU-212的生物转化。本研究采用了人卵巢癌细胞系A-2780、A-2780CYP1A1(-)以及非癌性人卵巢表面上皮(HOSE)细胞。与其他作者的观点相反,我们发现CYP1A1是CYP1家族中参与DMU-212代谢活化的主要酶。由于DMU-212对HOSE和A-2780CYP1A1(-)细胞明显较弱的抗增殖作用与CYP1A1表达缺失有关,我们认为母体化合物的生物活性可能与其向DMU-214的代谢活化以及该酶的水平有关。