首页> 外文期刊>Genome Biology >Modeling antibiotic and cytotoxic effects of the dimeric isoquinoline IQ-143 on metabolism and its regulation in Staphylococcus aureus, Staphylococcus epidermidis and human cells.
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Modeling antibiotic and cytotoxic effects of the dimeric isoquinoline IQ-143 on metabolism and its regulation in Staphylococcus aureus, Staphylococcus epidermidis and human cells.

机译:模拟二聚异喹啉IQ-143对金黄色葡萄球菌,表皮葡萄球菌和人类细胞的代谢及其调控的抗生素和细胞毒性作用。

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摘要

BACKGROUND: Xenobiotics represent an environmental stress and as such are a source for antibiotics, including the isoquinoline (IQ) compound IQ-143. Here, we demonstrate the utility of complementary analysis of both host and pathogen datasets in assessing bacterial adaptation to IQ-143, a synthetic analog of the novel type N,C-coupled naphthyl-isoquinoline alkaloid ancisheynine. RESULTS: Metabolite measurements, gene expression data and functional assays were combined with metabolic modeling to assess the effects of IQ-143 on Staphylococcus aureus, Staphylococcus epidermidis and human cell lines, as a potential paradigm for novel antibiotics. Genome annotation and PCR validation identified novel enzymes in the primary metabolism of staphylococci. Gene expression response analysis and metabolic modeling demonstrated the adaptation of enzymes to IQ-143, including those not affected by significant gene expression changes. At lower concentrations, IQ-143 was bacteriostatic, and at higher concentrations bactericidal, while the analysis suggested that the mode of action was a direct interference in nucleotide and energy metabolism. Experiments in human cell lines supported the conclusions from pathway modeling and found that IQ-143 had low cytotoxicity. CONCLUSIONS: The data suggest that IQ-143 is a promising lead compound for antibiotic therapy against staphylococci. The combination of gene expression and metabolite analyses with in silico modeling of metabolite pathways allowed us to study metabolic adaptations in detail and can be used for the evaluation of metabolic effects of other xenobiotics.CAS Registry/EC Number/Name of Substance 0 (Anti-Bacterial Agents). 0 (IQ-143 compound). 0 (Isoquinolines). 0 (Naphthalenes).
机译:背景:异生物素代表环境压力,因此是包括异喹啉(IQ)化合物IQ-143在内的抗生素的来源。在这里,我们证明了宿主和病原体数据集的互补分析在评估细菌对IQ-143的适应性方面的作用,IQ-143是新型N,C偶联的萘基-异喹啉生物碱anshesheynine的合成类似物。结果:代谢物测量,基因表达数据和功能测定与代谢建模相结合,以评估IQ-143对金黄色葡萄球菌,表皮葡萄球菌和人细胞系的影响,作为新型抗生素的潜在范例。基因组注释和PCR验证在葡萄球菌的主要代谢中鉴定出新酶。基因表达反应分析和代谢建模证明了酶对IQ-143的适应性,包括不受显着基因表达变化影响的酶。在较低浓度下,IQ-143具有抑菌作用,在较高浓度下具有杀菌作用,而分析表明其作用方式是对核苷酸和能量代谢的直接干扰。在人类细胞系中进行的实验支持了通路建模的结论,并发现IQ-143具有低细胞毒性。结论:数据表明,IQ-143是一种有前途的铅化合物,可用于抗葡萄球菌的抗生素治疗。基因表达和代谢物分析与代谢途径的计算机模拟相结合,使我们能够详细研究代谢适应性,并可用于评估其他异源生物的代谢作用.CAS注册号/ EC编号/物质名称0(细菌制剂)。 0(IQ-143化合物)。 0(异喹啉)。 0(萘)。

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