首页> 外文期刊>Genes >A Humanized Yeast Phenomic Model of Deoxycytidine Kinase to Predict Genetic Buffering of Nucleoside Analog Cytotoxicity
【24h】

A Humanized Yeast Phenomic Model of Deoxycytidine Kinase to Predict Genetic Buffering of Nucleoside Analog Cytotoxicity

机译:人源化酵母脱氧胞苷激酶模型,预测核苷类似物细胞毒性的遗传缓冲。

获取原文
           

摘要

Knowledge about synthetic lethality can be applied to enhance the efficacy of anticancer therapies in individual patients harboring genetic alterations in their cancer that specifically render it vulnerable. We investigated the potential for high-resolution phenomic analysis in yeast to predict such genetic vulnerabilities by systematic, comprehensive, and quantitative assessment of drug–gene interaction for gemcitabine and cytarabine, substrates of deoxycytidine kinase that have similar molecular structures yet distinct antitumor efficacy. Human deoxycytidine kinase (dCK) was conditionally expressed in the S accharomyces cerevisiae genomic library of knockout and knockdown (YKO/KD) strains , to globally and quantitatively characterize differential drug–gene interaction for gemcitabine and cytarabine. Pathway enrichment analysis revealed that autophagy, histone modification, chromatin remodeling, and apoptosis-related processes influence gemcitabine specifically, while drug–gene interaction specific to cytarabine was less enriched in gene ontology. Processes having influence over both drugs were DNA repair and integrity checkpoints and vesicle transport and fusion. Non-gene ontology (GO)-enriched genes were also informative. Yeast phenomic and cancer cell line pharmacogenomics data were integrated to identify yeast–human homologs with correlated differential gene expression and drug efficacy, thus providing a unique resource to predict whether differential gene expression observed in cancer genetic profiles are causal in tumor-specific responses to cytotoxic agents.
机译:有关合成致死性的知识可用于增强个体癌症中遗传变异的个体患者的抗癌治疗效果,特别是使其易受伤害。我们通过系统,全面和定量评估吉西他滨和阿糖胞苷的脱氧胞苷激酶底物具有相似的分子结构,但具有明显的抗肿瘤功效,通过系统,全面和定量的评估,对酵母中高分辨率表型分析的潜力进行了预测,以预测此类遗传易感性。人类脱氧胞苷激酶(dCK)在啤酒酵母基因组文库的敲除和敲除(YKO / KD)菌株中有条件表达,以全局和定量表征吉西他滨和阿糖胞苷的药物-基因相互作用。通路富集分析表明,自噬,组蛋白修饰,染色质重塑和凋亡相关过程会特别影响吉西他滨,而阿糖胞苷特异的药物-基因相互作用在基因本体中的富集较少。对这两种药物都有影响的过程是DNA修复和完整性检查点以及囊泡运输和融合。非基因本体(GO)丰富的基因也是有益的。整合酵母表型学和癌细胞系药物基因组学数据,以鉴定具有相关差异基因表达和药物功效的酵母-人类同源物,从而提供了独特的资源来预测在癌症遗传谱中观察到的差异基因表达是否对肿瘤特异性细胞毒性反应起因代理商。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号