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Quantification of Expression of Staphylococcus epidermidis Housekeeping Genes with Taqman Quantitative PCR during In Vitro Growth and under Different Conditions

机译:Taqman定量PCR体外和不同条件下表皮葡萄球菌管家基因表达的定量

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The aims of the present study were (i) to develop and test a sensitive and reproducible method for the study of gene expression in staphylococci and (ii) to study the expression of five housekeeping genes which are involved in nucleic acid metabolism (gmk, guanylate kinase; the dihydrofolate reductase [DHFR] gene), glucose metabolism (tpi, triosephosphate isomerase), and protein metabolism (the 16S rRNA gene;hsp-60, heat-shock protein 60) during in vitro exponential and stationary growth. A modified method for instant mRNA isolation was combined with gene quantification via Taqman real-time quantitative PCR. The detection limit of our method was 10 copies of RNA. The average intersample variability was 16%. A 10-fold increase in the expression of the hsp-60 gene was induced by exposure to a 10°C heat shock (37 to 47°C) for 10 min. During in vitro growth, the expression of all five housekeeping genes showed rapid up-regulation after inoculation of the bacteria in brain heart infusion medum and started to decline during the mid-exponential-growth phase. Maximal gene expression was 110- to 300-fold higher than gene expression during stationary phase. This indicates that housekeeping metabolism is a very dynamic process that is extremely capable of adapting to different growth conditions. Expression of the 16S rRNA gene decreases significantly earlier than that of other housekeeping genes. This confirms earlier findings forEscherichia coli that a decline in bacterial ribosomal content (measured by 16S rRNA gene expression) precedes the decline in protein synthesis (measured by mRNA expression).
机译:本研究的目的是(i)开发和测试一种敏感且可重现的方法,用于研究葡萄球菌中的基因表达;(ii)研究涉及核酸代谢的五个管家基因的表达gmk ,鸟苷酸激酶;二氢叶酸还原酶[DHFR]基因),葡萄糖代谢( tpi ,三糖磷酸异构酶)和蛋白质代谢(16S rRNA基因; hsp-60 < / em>,热激蛋白60)在体外以指数和稳态生长。一种改进的即时mRNA分离方法与通过Taqman实时定量PCR进行基因定量相结合。我们方法的检测极限是10个RNA拷贝。样本间的平均变异性为16%。通过暴露于10°C热激(37至47°C)10分钟,诱导 hsp-60 基因表达增加10倍。在体外生长过程中,所有五个管家基因的表达在脑心灌注液中接种细菌后均显示出快速上调,并在指数增长中期开始下降。在稳定期,最大基因表达比基因表达高110到300倍。这表明管家代谢是一个非常动态的过程,非常有能力适应不同的生长条件。 16S rRNA基因的表达比其他管家基因的表达显着下降。这证实了大肠杆菌的早期发现,即细菌核糖体含量的下降(通过16S rRNA基因表达测量)先于蛋白质合成的下降(通过mRNA表达测量)。

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