Alexander Stephen, Min Junxia, Alexander Hannah
Division of Biological Sciences, 303 Tucker Hall, University of Missouri, Columbia, MO 65211-7400, USA.
Biochim Biophys Acta. 2006 Mar;1760(3):301-9. doi: 10.1016/j.bbagen.2005.11.015. Epub 2005 Dec 20.
Resistance to chemotherapy is a major obstacle for the treatment of cancer and a subject of extensive research. Numerous mechanisms of drug resistance have been proposed, and they differ for different drugs. Nevertheless, it is clear that our understanding of this important problem is still incomplete, and that new targets for modulating therapy still await discovery. The attractive biology and the availability of powerful molecular techniques have made the cellular slime mold Dictyostelium discoideum, a powerful non-mammalian model for drug target discovery, and the problem of drug resistance. To understand the molecular basis of chemoresistance to the widely used drug cisplatin, both genetic and pharmacological approaches have been applied to this versatile experimental system. These studies have resulted in the identification of novel molecular pathways which can be used to increase the efficacy of cisplatin, and brought attention to the role of sphingolipids in mediating the cellular response to chemotherapeutic drugs. In the following review, we will describe the history and utility of D. discoideum in pharmacogenetics, and discuss recent studies which focus attention on the role of sphingolipids in chemotherapy and chemoresistance.
化疗耐药是癌症治疗的主要障碍,也是广泛研究的课题。人们已经提出了多种耐药机制,而且不同药物的耐药机制各不相同。然而,很明显我们对这个重要问题的理解仍然不完整,调节治疗的新靶点仍有待发现。黏菌盘基网柄菌具有吸引人的生物学特性且拥有强大的分子技术,这使其成为药物靶点发现和耐药问题研究的强大非哺乳动物模型。为了了解对广泛使用的药物顺铂产生化学抗性的分子基础,遗传和药理学方法都已应用于这个通用的实验系统。这些研究已经确定了可用于提高顺铂疗效的新分子途径,并使人们关注鞘脂在介导细胞对化疗药物反应中的作用。在以下综述中,我们将描述盘基网柄菌在药物遗传学中的历史和用途,并讨论最近将重点放在鞘脂在化疗和化疗耐药中作用的研究。