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Reporter Metabolite Analysis of Transcriptional Profiles of a Staphylococcus aureus Strain with Normal Phenotype and Its Isogenic hemB Mutant Displaying the Small-Colony-Variant Phenotype

机译:表型正常的金黄色葡萄球菌菌株及其表现出小菌落变种表型的同基因hemB突变体的转录特征的记者代谢产物分析

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摘要

In this study, full-genome DNA microarrays based on the sequence of Staphylococcus aureus N315 were used to compare the transcriptome of a clinical S. aureus strain with a normal phenotype to that of its isogenic mutant with a stable small-colony-variant (SCV) phenotype (hemB::ermB). In addition to standard statistical analyses, systems biology advances were applied to identify reporter metabolites and to achieve a more detailed survey of genome-wide expression differences between the hemB mutant and its parental strain. Genes of enzymes involved in glycolytic and fermentative pathways were found to be up-regulated in the hemB mutant. Furthermore, our analyses allowed identification of additional differences between the normal-phenotype S. aureus and the SCV, most of which were related to metabolism. Profound differences were identified especially in purine biosynthesis as well as in arginine and proline metabolism. Of particular interest, a hypothetical gene of the Crp/Fnr family (SA2424) that is part of the arginine-deiminase (AD) pathway, whose homologue in Streptococcus suis is assumed to be involved in intracellular persistence, showed significantly increased transcription in the hemB mutant. The hemB mutant potentially uses the up-regulated AD pathway to produce ATP or (through ammonia production) to counteract the acidic environment that prevails intracellularly. Moreover, genes involved in capsular polysaccharide and cell wall synthesis were found to be significantly up-regulated in the hemB mutant and therefore potentially responsible for the changed cell morphology of SCVs. In conclusion, the identified differences may be responsible for the SCV phenotype and its association with chronic and persistent infections.
机译:在这项研究中,基于金黄色葡萄球菌N315序列的全基因组DNA微阵列用于比较具有正常表型的临床金黄色葡萄球菌菌株与其具有稳定小菌落变异体(SCV)的同基因突变体的转录组)表型(hemB :: ermB)。除标准的统计分析外,系统生物学的进步还用于鉴定报告基因代谢物,并实现了hemB突变体与其亲本菌株之间全基因组表达差异的更详细调查。发现在hemB突变体中,参与糖酵解和发酵途径的酶基因被上调。此外,我们的分析允许确定正常表型金黄色葡萄球菌和SCV之间的其他差异,其中大多数与代谢有关。特别是在嘌呤的生物合成以及精氨酸和脯氨酸的代谢中发现了深刻的差异。特别令人感兴趣的是,作为精氨酸脱亚氨酶(AD)途径一部分的Crp / Fnr家族(SA2424)的假设基因在猪链球菌中的同源性被认为与细胞内持久性有关,其hemB中的转录显着增加突变体。 hemB突变体可能使用上调的AD途径来产生ATP或(通过产生氨)抵消细胞内普遍存在的酸性环境。此外,发现与荚膜多糖和细胞壁合成有关的基因在hemB突变体中显着上调,因此可能导致SCV的细胞形态发生变化。总之,确定的差异可能是SCV表型及其与慢性和持续感染的联系。

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