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对影响抗癌药物KP1019(FFC14A)活性的化学、遗传和表观遗传因素的系统评估。

A systematic assessment of chemical, genetic, and epigenetic factors influencing the activity of anticancer drug KP1019 (FFC14A).

作者信息

Golla Upendarrao, Swagatika Swati, Chauhan Sakshi, Tomar Raghuvir Singh

机构信息

Laboratory of Chromatin Biology, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER), Bhopal 462066, India.

出版信息

Oncotarget. 2017 Sep 30;8(58):98426-98454. doi: 10.18632/oncotarget.21416. eCollection 2017 Nov 17.

Abstract

KP1019 ([trans-RuCl(1H-indazole)]; FFC14A) is one of the promising ruthenium-based anticancer drugs undergoing clinical trials. Despite the pre-clinical and clinical success of KP1019, the mode of action and various factors capable of modulating its effects are largely unknown. Here, we used transcriptomics and genetic screening approaches in budding yeast model and deciphered various genetic targets and plethora of cellular pathways including cellular signaling, metal homeostasis, vacuolar transport, and lipid homeostasis that are primarily targeted by KP1019. We also demonstrated that KP1019 modulates the effects of TOR (target of rapamycin) signaling pathway and induces accumulation of neutral lipids (lipid droplets) in both yeast and HeLa cells. Interestingly, KP1019-mediated effects were found augmented with metal ions (Al/Ca/Cd/Cu/Mn/Na/Zn), and neutralized by Fe, antioxidants, osmotic stabilizer, and ethanolamine. Additionally, our comprehensive screening of yeast histone H3/H4 mutant library revealed several histone residues that could significantly modulate the KP1019-induced toxicity. Altogether, our findings in both the yeast and HeLa cells provide molecular insights into mechanisms of action of KP1019 and various factors (chemical/genetic/epigenetic) that can alter the therapeutic efficiency of this clinically important anticancer drug.

摘要

KP1019([反式-氯化钌(1H-吲唑)];FFC14A)是正在进行临床试验的有前景的钌基抗癌药物之一。尽管KP1019在临床前和临床方面取得了成功,但其作用方式以及能够调节其效果的各种因素在很大程度上仍不清楚。在这里,我们在芽殖酵母模型中使用转录组学和基因筛选方法,破译了各种基因靶点以及包括细胞信号传导、金属稳态、液泡运输和脂质稳态在内的大量细胞途径,这些都是KP1019主要作用的靶点。我们还证明,KP1019调节雷帕霉素靶蛋白(TOR)信号通路的作用,并在酵母和HeLa细胞中诱导中性脂质(脂滴)的积累。有趣的是,发现金属离子(铝/钙/镉/铜/锰/钠/锌)可增强KP1019介导的作用,而铁、抗氧化剂、渗透稳定剂和乙醇胺可使其作用中和。此外,我们对酵母组蛋白H3/H4突变体文库的全面筛选揭示了几个可显著调节KP1019诱导毒性的组蛋白残基。总之,我们在酵母和HeLa细胞中的研究结果为KP1019的作用机制以及可改变这种临床重要抗癌药物治疗效果的各种因素(化学/基因/表观遗传)提供了分子见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00e9/5716741/77b9d5c08298/oncotarget-08-98426-g001.jpg

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