Cancer Biology Laboratory, Center of Excellency for Advanced Science, National Research Center, Dokki 12622, Cairo, Egypt.
Environ Toxicol Pharmacol. 2009 Nov;28(3):317-22. doi: 10.1016/j.etap.2009.05.010. Epub 2009 May 22.
A marine fungal isolate, Penicillium sp. fungus isolated from seaweed, Ulva sp., led to the isolation of a new chromone derivatives, 2-(hydroxymethyl)-8-methoxy-3-methyl-4H-chromen-4-one (chromanone A). The structure was determined by interpretation of their spectroscopic data (1D and 2D NMR, MS, UV and IR). At the nitiation stage of carcinogenesis, carcinogens is activated by cytochrome P-450 1A (CYP1A) and detoxified by glutathione S-transferases (GST), quinine reductase (QR), and epoxide hydrolase (mEH). We tested the modulatory effect of chromanone A on these carcinogen metabolizing enzymes. The results indicated that chromanone A (4μg/ml) is a promising inhibitor of CYP1A activity up to 60% of the stimulated-CYP1A in murine hepatoma cells (Hepa1c1c7), and it significantly induced GST but not total thiols at low concentrations. Chromanone A had no influence on QR activity, while it resulted in a significant dose-dependant enhancement mEH activity in Hepa1c1c7 cells (P<0.05-0.01). Additionally, chromanone A possessed a potent specific radical scavenging activity against hydroxyl radicals more than peroxyl radicals that may be responsible for the inhibitory effect of chromanone A on the induced-DNA damage in cells. In conclusion, this study proved that chromanone A may act as an active tumor anti-initiating via modulation of carcinogen metabolizing enzymes and protection from DNA damage.
从海藻中分离到的海洋真菌Penicillium sp. 分离得到一种新的色酮衍生物 2-(羟甲基)-8-甲氧基-3-甲基-4H-色烯-4-酮(色满酮 A)。结构通过其光谱数据(1D 和 2D NMR、MS、UV 和 IR)的解释来确定。在致癌作用的起始阶段,致癌物质被细胞色素 P-450 1A(CYP1A)激活,并被谷胱甘肽 S-转移酶(GST)、奎宁还原酶(QR)和环氧化物水解酶(mEH)解毒。我们测试了色满酮 A 对这些致癌代谢酶的调节作用。结果表明,色满酮 A(4μg/ml)可有效抑制 CYP1A 活性,高达 60%的刺激 CYP1A 在鼠肝癌细胞(Hepa1c1c7)中,并且在低浓度下可显著诱导 GST 但不诱导总硫醇。色满酮 A 对 QR 活性没有影响,而在 Hepa1c1c7 细胞中,它导致 mEH 活性呈显著剂量依赖性增强(P<0.05-0.01)。此外,色满酮 A 对羟自由基具有强烈的特定自由基清除活性,超过过氧自由基,这可能是色满酮 A 对细胞中诱导的 DNA 损伤的抑制作用的原因。总之,本研究证明色满酮 A 可能通过调节致癌代谢酶和防止 DNA 损伤来发挥抗肿瘤起始作用。