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Combined Transcriptomics and Chemical-Genetics Reveal Molecular Mode of Action of Valproic acid an Anticancer Molecule using Budding Yeast Model

机译:转录组学和化学遗传学相结合揭示了使用芽酵母模型的丙戊酸(一种抗癌分子)的分子作用方式。

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摘要

Valproic acid (VA) is a pharmacologically important histone deacetylase inhibitor that recently garnered attention as an anticancer agent. Since the molecular mechanisms behind the multiple effects of VA are unclear, this study was aimed to unravel the comprehensive cellular processes affected by VA and its molecular targets in vivo using budding yeast as a model organism. Interestingly, genome-wide transcriptome analysis of cells treated with VA showed differential regulation of 30% of the genome. Functional enrichment analysis of VA transcriptome evidenced alteration of various cellular processes including cell cycle, cell wall biogenesis, DNA repair, ion homeostasis, metabolism, stress response, transport and ribosomal biogenesis, etc. Moreover, our genetic screening analysis revealed VA molecular targets belonging to oxidative and osmotic stress, DNA repair, cell wall integrity, and iron homeostasis. Further, our results demonstrated the activation of mitogen-activated protein kinases (MAPKs) Hog1 (p38) and Slt2 (p44/42) upon VA treatment. Our results also exhibited that VA acts through alteration of mitochondrial, ER architecture and functions. Especially, VA effects were neutralized in cells lacking lipid particles. Altogether, our results deciphered the novel molecular insights and mechanistic links to strengthen our knowledge on diverse cellular effects of VA along with its probable therapeutic targets and detoxification approaches.
机译:丙戊酸(VA)是一种药理学上重要的组蛋白脱乙酰基酶抑制剂,最近作为抗癌剂受到关注。由于VA多种作用背后的分子机制尚不清楚,因此本研究旨在使用发芽酵母作为模型生物,揭示受VA及其分子靶标影响的综合细胞过程。有趣的是,用VA处理的细胞的全基因组转录组分析显示出30%的基因组差异调节。 VA转录组的功能富集分析证明了各种细胞过程的改变,包括细胞周期,细胞壁生物发生,DNA修复,离子稳态,代谢,应激反应,转运和核糖体生物发生等。此外,我们的遗传筛选分析揭示了VA分子靶标属于氧化和渗透应激,DNA修复,细胞壁完整性和铁稳态。此外,我们的研究结果表明,VA治疗后有丝分裂原激活的蛋白激酶(MAPKs)Hog1(p38)和Slt2(p44 / 42)激活。我们的结果还表明,VA通过改变线粒体,ER结构和功能发挥作用。特别是,在缺乏脂质颗粒的细胞中,VA作用被中和。总而言之,我们的结果破译了新颖的分子见解和机制联系,以加强我们对VA的各种细胞作用及其可能的治疗靶点和排毒方法的认识。

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