Schenk Paul W, Boersma Antonius W M, Brok Mariël, Burger Herman, Stoter Gerrit, Nooter Kees
Department of Medical Oncology, University Hospital Rotterdam-Daniel den Hoed Cancer Center, Rotterdam, The Netherlands.
Mol Pharmacol. 2002 Mar;61(3):659-66. doi: 10.1124/mol.61.3.659.
The therapeutic potential of the highly active anticancer agent cisplatin is severely limited by the occurrence of cellular resistance. A better understanding of the molecular pathways involved in cisplatin-induced cell death could potentially indicate ways to overcome cellular unresponsiveness to the drug and thus lead to better treatment results. We used the budding yeast Saccharomyces cerevisiae as a model organism to identify and characterize novel genes involved in cisplatin-induced cell kill, and found that SKY1 (SR-protein-specific kinase from budding yeast) is a cisplatin sensitivity gene whose disruption conferred cisplatin resistance. In cross-resistance studies, we observed resistance of yeast sky1 Delta cells (i.e., cells from which the SKY1 gene had been disrupted) to cisplatin, carboplatin (but not oxaliplatin), doxorubicin and daunorubicin, and hypersensitivity to cadmium chloride and 5-fluorouracil. Furthermore, these cells did not display reduced platinum accumulation, DNA platination or doxorubicin accumulation, indicating that the resistance is unrelated to decreased drug import or increased drug export. Based on the modification of the anticancer drug sensitivity profile and our finding that sky1 Delta cells display a mutator phenotype, we propose that Sky1p might play a significant role in specific repair and/or tolerance pathways. Disruption of the S. cerevisiae SKY1 gene would thus result in deregulation of such mechanisms and, consequently, lead to altered drug sensitivity.
高活性抗癌药物顺铂的治疗潜力因细胞耐药性的出现而受到严重限制。更好地了解顺铂诱导细胞死亡所涉及的分子途径,可能会找到克服细胞对该药物无反应性的方法,从而带来更好的治疗效果。我们以芽殖酵母酿酒酵母作为模式生物,来鉴定和表征参与顺铂诱导细胞杀伤的新基因,发现SKY1(来自芽殖酵母的SR蛋白特异性激酶)是一个顺铂敏感性基因,其缺失赋予了顺铂耐药性。在交叉耐药性研究中,我们观察到酵母sky1Δ细胞(即SKY1基因已被破坏的细胞)对顺铂、卡铂(但对奥沙利铂不耐药)、阿霉素和柔红霉素耐药,而对氯化镉和5-氟尿嘧啶敏感。此外,这些细胞的铂积累、DNA铂化或阿霉素积累并未减少,这表明耐药性与药物摄入减少或药物排出增加无关。基于抗癌药物敏感性谱的改变以及我们发现sky1Δ细胞表现出突变体表型,我们提出Sky1p可能在特定的修复和/或耐受途径中发挥重要作用。因此,酿酒酵母SKY1基因的缺失会导致这些机制失调,从而导致药物敏感性改变。