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首页> 外文期刊>Mutation research-Fundamental and Molecular Mechanisms of Mutagenesis >Expression of human poly (ADP-ribose) polymerase 1 in Saccharomyces cerevisiae: Effect on survival, homologous recombination and identification of genes involved in intracellular localization
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Expression of human poly (ADP-ribose) polymerase 1 in Saccharomyces cerevisiae: Effect on survival, homologous recombination and identification of genes involved in intracellular localization

机译:人聚(ADP-核糖)聚合酶1在酿酒酵母中的表达:对存活,同源重组和细胞内定位相关基因鉴定的影响

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摘要

The poly (ADP-ribose) polymerase 1 (PARP-1) actively participates in a series of functions within the cell that include: mitosis, intracellular signaling, cell cycle regulation, transcription and DNA damage repair. Therefore, inhibition of PARP1 has a great potential for use in cancer therapy. As resistance to PARP inhibitors is starting to be observed in patients, thus the function of PARP-1 needs to be studied in depth in order to find new therapeutic targets. To gain more information on the PARP-1 activity, we expressed PARP-1 in yeast and investigated its effect on cell growth and UV induced homologous recombination. To identify candidate genes affecting PARP-1 activity and cellular localization, we also developed a yeast genome wide genetic screen.We found that PARP-1 strongly inhibited yeast growth, but when yeast was exposed to the PARP-1 inhibitor 6(5-H) phenantridinone (PHE), it recovered from the growth suppression. Moreover, we showed that PARP-1 produced PAR products in yeast and we demonstrated that PARP-1 reduced UV-induced homologous recombination. By genome wide screening, we identified 99 mutants that suppressed PARP-1 growth inhibition. Orthologues of human genes were found for 41 of these yeast genes. We determined whether the PARP-1 protein level was altered in strains which are deleted for the transcription regulator GAL3, the histone H1 gene HH01, the HUL4 gene, the deubiquitination enzyme gene OTU1, the nuclear pore protein POM152 and the SNT1 that encodes for the Set3C subunit of the histone deacetylase complex. In these strains the PARP-1 level was roughly the same as in the wild type. PARP-1 localized in the nucleus more in the snt1 DELTA than in the wild type strain; after UV radiation, PARP-1 localized in the nucleus more in hho1 and pom 152 deletion strains than in the wild type indicating that these functions may have a role on regulating PARP-1 level and activity in the nucleus.
机译:聚(ADP-核糖)聚合酶1(PARP-1)积极参与细胞内的一系列功能,包括:有丝分裂,细胞内信号传导,细胞周期调节,转录和DNA损伤修复。因此,抑制PARP1具有用于癌症治疗的巨大潜力。由于开始在患者中观察到对PARP抑制剂的耐药性,因此需要深入研究PARP-1的功能,以找到新的治疗靶标。为了获得有关PARP-1活性的更多信息,我们在酵母中表达了PARP-1,并研究了其对细胞生长和UV诱导的同源重组的影响。为了鉴定影响PARP-1活性和细胞定位的候选基因,我们还开发了酵母全基因组遗传筛选技术。我们发现PARP-1强烈抑制酵母生长,但是当酵母暴露于PARP-1抑制剂6(5-H )菲啶酮(PHE),它从生长抑制中恢复过来。此外,我们表明PARP-1在酵母中产生PAR产物,并且我们证明PARP-1减少了UV诱导的同源重组。通过全基因组筛选,我们确定了抑制PARP-1生长抑制的99个突变体。发现了这些酵母基因中的41种人类基因的直向同源物。我们确定了是否删除了转录调控因子GAL3,组蛋白H1基因HH01,HUL4基因,去泛素化酶基因OTU1,核孔蛋白POM152和编码该蛋白的SNT1的菌株中PARP-1蛋白的水平是否发生了改变。组蛋白脱乙酰基酶复合物的Set3C亚基。在这些菌株中,PARP-1水平与野生型大致相同。 PARP-1在snt1 DELTA中比在野生型菌株中更多地位于细胞核中。在紫外线照射后,与野生型相比,PARP-1在hho1和pom 152缺失菌株中更多地位于细胞核中,这表明这些功能可能对调节细胞核中的PARP-1水平和活性起作用。

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