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盘基网柄菌对顺铂的全局转录反应确定了潜在的药物靶点。

Global transcriptional responses to cisplatin in Dictyostelium discoideum identify potential drug targets.

作者信息

Van Driessche Nancy, Alexander Hannah, Min Junxia, Kuspa Adam, Alexander Stephen, Shaulsky Gad

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 Sep 25;104(39):15406-11. doi: 10.1073/pnas.0705996104. Epub 2007 Sep 18.

Abstract

Dictyostelium discoideum is a useful model for studying mechanisms of cisplatin drug sensitivity. Our previous findings, that mutations in sphingolipid metabolism genes confer cisplatin resistance in D. discoideum and in human cells, raised interest in the resistance mechanisms and their implications for cisplatin chemotherapy. Here we used expression microarrays to monitor physiological changes and to identify pathways that are affected by cisplatin treatment of D. discoideum. We found >400 genes whose regulation was altered by cisplatin treatment of wild-type cells, including groups of genes that participate in cell proliferation and in nucleotide and protein metabolism, showing that the cisplatin response is orderly and multifaceted. Transcriptional profiling of two isogenic cisplatin-resistant mutants, impaired in different sphingolipid metabolism steps, showed that the effect of cisplatin treatment was greater than the effect of the mutations, indicating that cisplatin resistance in the mutants is due to specific abilities to overcome the drug effects rather than to general drug insensitivity. Nevertheless, the mutants exhibited significantly different responses to cisplatin compared with the parent, and >200 genes accounted for that difference. Mutations in five cisplatin response genes (sgkB, csbA, acbA, smlA, and atg8) resulted in altered drug sensitivity, implicating novel pathways in cisplatin response. Our data illustrate how modeling complex cellular responses to drugs in genetically stable and tractable systems can uncover new targets with the potential for improving chemotherapy.

摘要

盘基网柄菌是研究顺铂药物敏感性机制的有用模型。我们之前的研究发现,鞘脂代谢基因的突变会使盘基网柄菌和人类细胞产生顺铂抗性,这引发了人们对耐药机制及其对顺铂化疗影响的兴趣。在此,我们使用表达微阵列来监测生理变化,并确定受顺铂处理盘基网柄菌影响的途径。我们发现超过400个基因的调控因顺铂处理野生型细胞而改变,包括参与细胞增殖以及核苷酸和蛋白质代谢的基因群,这表明顺铂反应是有序且多方面的。对两个在不同鞘脂代谢步骤受损的同基因顺铂抗性突变体进行转录谱分析,结果表明顺铂处理的影响大于突变的影响,这表明突变体中的顺铂抗性是由于克服药物作用的特定能力,而非普遍的药物不敏感性。然而,与亲本相比,突变体对顺铂表现出显著不同的反应,超过200个基因造成了这种差异。五个顺铂反应基因(sgkB、csbA、acbA、smlA和atg8)的突变导致药物敏感性改变,这表明顺铂反应中存在新的途径。我们的数据说明了在遗传稳定且易于处理的系统中对药物的复杂细胞反应进行建模如何能够发现具有改善化疗潜力的新靶点。

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