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首页> 外文期刊>BMC Biology >Genome-wide screening identifies new genes required for stress-induced phase 2 detoxification gene expression in animals
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Genome-wide screening identifies new genes required for stress-induced phase 2 detoxification gene expression in animals

机译:全基因组筛选确定动物应激诱导的2期排毒基因表达所需的新基因

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Background Phase 2 detoxification enzymes provide a vital defence against reactive oxygen species, including xenobiotic metabolites, which cause the oxidative damage involved in drug toxicity and many diseases. Hence, there is great interest in understanding how levels of these enzymes are regulated. CnC transcription factors, such as mammalian Nrf2, drive the expression of phase 2 enzymes and are activated as an important conserved response to oxidative stress and xenobiotics. For instance, the Caenorhabditis elegans Nrf2 orthologue, SKN-1, is activated in response to arsenite by the stress-activated p38-related kinase, PMK-1, leading to increased expression of phase 2 enzymes. Here we have used a genome-wide screening approach to identify other C. elegans genes that are required for stress-induced increases in phase 2 detoxification gene expression. Results Taking advantage of the elevated phase 2 gene expression in a mutant lacking the peroxidase PRDX-2, we have identified many new genes that are required for stress-induced expression of gcs-1 , a phase 2 enzyme critically required for glutathione synthesis. Significantly, these include genes previously implicated in resistance to ionizing radiation, longevity and responses to pathogenic infection. Many of these new candidate activators of gcs-1 are also required for the stress-induced intestinal expression of other phase 2 genes. However, intriguingly, our data suggest other factors may be specifically required for the stress-induced expression of gcs-1 . Notably, we demonstrate that the candidate activator TIR-1(SARM1) and the MAPKKK NSY-1(Ask1) are required for the arsenite-induced activation of PMK-1. However, our data suggest that the majority of candidates participate in novel mechanisms to promote gcs-1 expression. For example, the E4 ubiquitin ligase UFD-2(UBE4B) is dispensable for PMK-1 activation but important for maintaining nuclear levels of SKN-1, the stress-induced expression of multiple SKN-1-target genes and oxidative stress resistance. Conclusions Here we present the first functional, genome-wide analysis identifying genes that are required for activation of phase 2 detoxification genes in an animal. Our study identifies potential new regulators of Nrf2, reveals that additional mechanisms promote the stress-induced expression of specific phase 2 detoxification genes and provides new insight into the relationships between these universally important stress defences, oxidative stress resistance and aging.
机译:背景技术第二阶段的解毒酶对包括异源生物代谢产物在内的活性氧物种提供了至关重要的防御作用,后者会引起涉及药物毒性和许多疾病的氧化损伤。因此,非常有兴趣了解如何调节这些酶的水平。 CnC转录因子(例如哺乳动物Nrf2)驱动2相酶的表达,并被激活为对氧化应激和异源生物的重要保守反应。例如,秀丽隐杆线虫Nrf2直向同源物SKN-1被应力激活的p38相关激酶PMK-1响应亚砷酸盐而激活,导致2期酶表达增加。在这里,我们已经使用了全基因组筛选方法来鉴定其他应激秀丽隐杆线虫基因,这些其他秀丽隐杆线虫基因是应激诱导的2期解毒基因表达增加所必需的。结果利用缺乏过氧化物酶PRDX-2的突变体中2期基因表达升高的优势,我们发现了许多新基因,这些基因是应激诱导的gcs-1表达的必需基因,gcs-1是谷胱甘肽合成的关键2期酶。重要的是,这些基因包括以前与电离辐射抗性,寿命和对病原体感染的反应有关的基因。许多其他新的gcs-1候选激活剂也是其他2期基因在压力诱导下的肠道表达所必需的。但是,有趣的是,我们的数据表明,应力诱导的gcs-1表达可能还需要其他因素。值得注意的是,我们证明了候选活化剂TIR-1(SARM1)和MAPKKK NSY-1(Ask1)是砷诱导的PMK-1活化所必需的。但是,我们的数据表明,大多数候选人都参与了促进gcs-1表达的新型机制。例如,E4泛素连接酶UFD-2(UBE4B)对于PMK-1激活是必不可少的,但对于维持SKN-1的核水平,多个SKN-1靶基因的应激诱导表达和氧化应激抗性而言,则很重要。结论在这里,我们提出了第一个功能性全基因组分析,用于鉴定激活动物中2相排毒基因所需的基因。我们的研究确定了Nrf2的潜在新调节剂,揭示了其他机制可促进应激诱导的特定2期排毒基因的表达,并为这些普遍重要的应激防御,抗氧化应激和衰老之间的关系提供新见解。

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