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Characterizing the transcriptional adaptation of Staphylococcus aureus to stationary phase growth

机译:的转录适应特征金黄色葡萄球菌固定相的增长

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摘要

Staphylococcus aureus is an important human pathogen that causes life-threatening infections, and is resistant to the majority of our antibiotic arsenal. This resistance is complicated by the observation that most antibacterial agents target actively growing cells, thus, proving ineffective against slow growing populations, such as cells within a biofilm or in stationary phase. Recently, our group generated updated genome annotation files for S. aureus that not only include protein-coding genes but also regulatory and small RNAs. As such, these annotation files were used to perform a transcriptomic analysis in order to understand the metabolic and physiological changes that occur during transition from active growth to stationary phase; with a focus on sRNAs. We observed similar to 24% of protein-coding and 34% of sRNA genes displaying changes in expression by >= 3-fold. Collectively, this study adds to our understanding of S. aureus adaptation to nutrient-limiting conditions, and sheds new light onto the contribution of sRNAs to this process.
机译:金黄色葡萄球菌是一种重要的人类病原体导致危及生命的感染,对大多数的抗生素阿森纳。最复杂的观察抗菌药物目标积极成长细胞,因此,对减缓证明无效不断增长的人口,如细胞内生物膜或固定相。组生成更新基因组注释文件不仅包括的金黄色葡萄球菌蛋白质编码基因也监管和小rna。用于执行一个转录组分析要理解代谢期间发生的生理变化从活跃的增长过渡到静止的阶段;编码蛋白质的24%和34%的sRNA基因> = 3重显示变化的表达式。总的来说,这项研究增加了我们对金黄色葡萄球菌适应的理解nutrient-limiting条件,启示了到srna对这个过程的贡献。

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