School of Medicine, University of Tasmania; Hobart TAS 7001, Australia.
Marinova Pty Ltd., Cambridge TAS 7170, Australia.
Mar Drugs. 2019 Jan 14;17(1):54. doi: 10.3390/md17010054.
Fucoidan, the sulfated fucose-rich polysaccharide derived from brown macroalgae, was reported to display some anti-cancer effects in in vitro and in vivo models that included apoptosis and cell cycle arrest. The proposed mechanisms of action involve enhanced immune surveillance and direct pro-apoptotic effects via the activation of cell signaling pathways that remain largely uncharacterized. This study aimed to identify cellular pathways influenced by fucoidan using an unbiased genetic approach to generate additional insights into the anti-cancer effects of fucoidan. Drug⁻gene interactions of fucoidan were assessed by a systematic screen of the entire set of 4,733 halpoid gene deletion strains. Some of the findings were confirmed using cell cycle analysis and DNA damage detection in non-immortalized human dermal fibroblasts and colon cancer cells. The yeast deletion library screen and subsequent pathway and interactome analysis identified global effects of fucoidan on a wide range of eukaryotic cellular processes, including RNA metabolism, protein synthesis, sorting, targeting and transport, carbohydrate metabolism, mitochondrial maintenance, cell cycle regulation, and DNA damage repair-related pathways. Fucoidan also reduced clonogenic survival, induced DNA damage and G1-arrest in colon cancer cells, while these effects were not observed in non-immortalized human fibroblasts. Our results demonstrate global effects of fucoidan in diverse cellular processes in eukaryotic cells and further our understanding about the inhibitory effect of fucoidan on the growth of human cancer cells.
岩藻聚糖硫酸酯,一种从褐藻中提取的富含硫酸基的岩藻糖多糖,在体外和体内模型中被报道具有一些抗癌作用,包括细胞凋亡和细胞周期停滞。其作用机制包括通过激活细胞信号通路增强免疫监视和直接促进细胞凋亡,而这些信号通路的特征在很大程度上尚不清楚。本研究旨在采用无偏遗传方法鉴定岩藻聚糖硫酸酯影响的细胞途径,以进一步深入了解岩藻聚糖硫酸酯的抗癌作用。通过系统筛选整个 4733 个半倍体基因缺失株系,评估岩藻聚糖硫酸酯的药物-基因相互作用。使用非永生化的人皮肤成纤维细胞和结肠癌细胞中的细胞周期分析和 DNA 损伤检测,对一些发现进行了验证。酵母缺失文库筛选和随后的途径和互作网络分析确定了岩藻聚糖硫酸酯对广泛真核细胞过程的全局影响,包括 RNA 代谢、蛋白质合成、分拣、靶向和运输、碳水化合物代谢、线粒体维持、细胞周期调控和与 DNA 损伤修复相关的途径。岩藻聚糖硫酸酯还降低了结肠癌细胞的集落形成能力,诱导了 DNA 损伤和 G1 期停滞,而在非永生化的人成纤维细胞中没有观察到这些效应。我们的结果表明,岩藻聚糖硫酸酯在真核细胞的多种细胞过程中具有全局作用,并进一步加深了我们对岩藻聚糖硫酸酯抑制人类癌细胞生长的抑制作用的理解。