Kuroda Aiko, Nakashima Takuji, Yamaguchi Kenichi, Oda Tatsuya
Division of Biochemistry, Faculty of Fisheries, Nagasaki University, Bunkyo-machi, Nagasaki 852-8521, Japan.
Comp Biochem Physiol C Toxicol Pharmacol. 2005 Jul;141(3):297-305. doi: 10.1016/j.cca.2005.07.009.
Chattonella marina (C. marina), a raphidophycean flagellate, is a causative organism of red tide, and highly toxic to fish. In this study, we found that the cell-free methanol extract prepared from this flagellate exhibited potent hemolytic activity against rabbit erythrocytes. Interestingly, the hemolytic activity of the extract was absolutely light-dependent, and no hemolytic activity was detected in the dark even at very high concentration. Gel filtration chromatography of the methanol extract on a column of Sephadex LH-20 revealed that the extract contained hemagglutinin as well as hemolytic agents, and the substances responsible for these activities were separately eluted. These results suggest that the hemagglutinating and hemolytic activities were derived from distinct compounds. The hemolytic fraction obtained after gel filtration (F4) caused marked inhibition of the growth of C. marina itself and other species of phytoplanktons. Furthermore, F4 showed a potent cytotoxicity toward various mammalian cultured cell lines including human tumor cells (HeLa cells) in a dose-dependent manner. The cytotoxicity was also light-dependent, and no cytotoxic effect was exhibited in any cell lines tested in the dark. After further purification procedures via preparative thin-layer chromatography and subsequent HPLC, a major hemolytic agent was obtained as highly purified form. Since the methanol extracts prepared from other raphidophycean flagellates such as Heterosigma akashiwo, Olisthodiscus luteus, and Fibrocapsa japonica showed light-dependent hemolytic activity toward rabbit erythrocytes, it was suggested that the light-dependent hemolytic agents commonly exist at least in these raphidophycean flagellates.
海洋卡盾藻(C. marina)是一种针胞藻纲鞭毛藻,是赤潮的致病生物,对鱼类具有高毒性。在本研究中,我们发现从这种鞭毛藻制备的无细胞甲醇提取物对兔红细胞表现出强大的溶血活性。有趣的是,提取物的溶血活性绝对依赖于光,即使在非常高的浓度下,在黑暗中也未检测到溶血活性。在Sephadex LH - 20柱上对甲醇提取物进行凝胶过滤色谱分析表明,提取物中含有血凝素以及溶血剂,并且负责这些活性的物质被分别洗脱。这些结果表明血凝和溶血活性源自不同的化合物。凝胶过滤后获得的溶血级分(F4)对海洋卡盾藻本身和其他浮游植物物种的生长产生了显著抑制。此外,F4对包括人肿瘤细胞(HeLa细胞)在内的各种哺乳动物培养细胞系表现出剂量依赖性的强大细胞毒性。细胞毒性也是光依赖性的,在黑暗中测试的任何细胞系中均未表现出细胞毒性作用。通过制备型薄层色谱和随后的HPLC进行进一步纯化后,获得了一种高度纯化形式的主要溶血剂。由于从其他针胞藻纲鞭毛藻如赤潮异弯藻、黄管藻和日本纤维藻制备的甲醇提取物对兔红细胞表现出光依赖性溶血活性,因此表明光依赖性溶血剂至少在这些针胞藻纲鞭毛藻中普遍存在。