Zaremberg Vanina, Gajate Consuelo, Cacharro Luis M, Mollinedo Faustino, McMaster Christopher R
Department of Pediatrics, Atlantic Research Centre, Dalhousie University, Halifax, Nova Scotia, Canada.
J Biol Chem. 2005 Nov 11;280(45):38047-58. doi: 10.1074/jbc.M502849200. Epub 2005 Sep 9.
Edelfosine is a prototypical member of the alkylphosphocholine class of antitumor drugs. Saccharomyces cerevisiae was used to screen for genes that modulate edelfosine cytotoxicity and identified sterol and sphingolipid pathways as relevant regulators. Edelfosine addition to yeast resulted in the selective partitioning of the essential plasma membrane protein Pma1p out of lipid rafts. Microscopic analysis revealed that Pma1p moved from the plasma membrane to intracellular punctate regions and finally localized to the vacuole. Consistent with altered sterol and sphingolipid synthesis resulting in increased edelfosine sensitivity, mislocalization of Pma1p was preceded by the movement of sterols out of the plasma membrane. Cells with enfeebled endocytosis and vacuolar protease activities prevented edelfosine-mediated (i) mobilization of sterols, (ii) loss of Pma1p from lipid rafts, and (iii) cell death. The activities of proteins and signaling processes are meaningfully altered by changes in lipid raft biophysical properties. This study points to a novel mode of action for an anti-cancer drug through modification of plasma membrane lipid composition resulting in the displacement of an essential protein from lipid rafts.
依地福新是抗肿瘤药物烷基磷胆碱类的典型成员。酿酒酵母被用于筛选调节依地福新细胞毒性的基因,并确定固醇和鞘脂途径为相关调节因子。向酵母中添加依地福新导致必需的质膜蛋白Pma1p从脂筏中选择性分配出来。显微镜分析显示,Pma1p从质膜移动到细胞内的点状区域,最终定位于液泡。与固醇和鞘脂合成改变导致依地福新敏感性增加一致,Pma1p的错误定位之前是固醇从质膜中移出。内吞作用和液泡蛋白酶活性减弱的细胞可防止依地福新介导的(i)固醇的动员,(ii)Pma1p从脂筏中的丢失,以及(iii)细胞死亡。脂筏生物物理性质的变化会有意义地改变蛋白质和信号传导过程的活性。这项研究指出了一种抗癌药物的新作用模式,即通过改变质膜脂质组成,导致一种必需蛋白质从脂筏中移位。