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Comparative Genome-Scale Metabolic Reconstruction and Flux Balance Analysis of Multiple Staphylococcus aureus Genomes Identify Novel Antimicrobial Drug Targets

机译:多个金黄色葡萄球菌基因组的比较基因组规模的代谢重建和通量平衡分析确定新的抗菌药物靶标。

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Mortality due to multidrug-resistant Staphylococcus aureus infection is predicted to surpass that of human immunodeficiency virus/AIDS in the United States. Despite the various treatment options for S. aureus infections, it remains a major hospital- and community-acquired opportunistic pathogen. With the emergence of multidrug-resistant S. aureus strains, there is an urgent need for the discovery of new antimicrobial drug targets in the organism. To this end, we reconstructed the metabolic networks of multidrug-resistant S. aureus strains using genome annotation, functional-pathway analysis, and comparative genomic approaches, followed by flux balance analysis-based in silico single and double gene deletion experiments. We identified 70 single enzymes and 54 pairs of enzymes whose corresponding metabolic reactions are predicted to be unconditionally essential for growth. Of these, 44 single enzymes and 10 enzyme pairs proved to be common to all 13 S. aureus strains, including many that had not been previously identified as being essential for growth by gene deletion experiments in S. aureus. We thus conclude that metabolic reconstruction and in silico analyses of multiple strains of the same bacterial species provide a novel approach for potential antibiotic target identification.
机译:在美国,由多重耐药性金黄色葡萄球菌感染引起的死亡率预计将超过人类免疫缺陷病毒/艾滋病。尽管 S有多种治疗选择。它仍然是医院和社区获得的主要机会病原体。随着耐多药 S的出现。金黄色葡萄球菌菌株,迫切需要在生物体中发现新的抗微生物药物靶标。为此,我们重建了耐多药 S的代谢网络。使用基因组注释,功能途径分析和比较基因组学方法对金黄色葡萄球菌进行筛选,然后进行基于通量平衡分析的计算机单双基因缺失实验。我们确定了70种单一酶和54对酶,它们的相应代谢反应预计对生长无条件地至关重要。在这些中,事实证明44种单一酶和10个酶对是所有13个S共有的。金黄色葡萄球菌菌株,包括许多以前未通过 S基因缺失实验鉴定为生长必需的菌株。金黄色。因此,我们得出结论,对同一细菌物种的多个菌株进行代谢重建和计算机分析,为潜在的抗生素靶标识别提供了一种新方法。

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