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Quantification of Bacterial Transcripts during Infection Using Competitive Reverse Transcription-PCR (RT-PCR) and LightCycler RT-PCR

机译:使用竞争性逆转录PCR(RT-PCR)和LightCycler RT-PCR定量感染期间的细菌转录本

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摘要

Bacteria have evolved sophisticated regulatory circuits to modulate their gene expression in response to disparate environments. In order to monitor bacterial gene expression and regulation in the host, methods for direct transcript analysis from clinical specimens are needed. For most bacterial infections, amplification of the mRNAs of interest is necessary due to the low numbers of cells present and the low levels of specific transcripts. Here we compare two methods of quantitative reverse transcription-PCR (RT-PCR)—competitive RT-PCR using a one-tube system followed by standard gel analysis and the real-time detection of PCR product formation by fluorescence resonance energy transfer technology using the LightCycler unit. We isolated Staphylococcus aureus RNA directly from clinical specimens obtained from cystic fibrosis patients with chronic S. aureus lung infection and from an animal model of foreign-body infection with no further cultivation of the bacteria. Competitive RT-PCR and LightCycler RT-PCR were tested for their ability to quantify the transcription of a constitutively expressed gyrase gene (gyr) and a highly regulated α-toxin gene (hla) of S. aureus. Reproducible results were obtained with both methods. A sensitivity of 104 (gyr) and 103 (hla) copies, respectively, was reached, which was sufficient for the quantification of transcripts during bacterial infection. Overall, the competitive RT-PCR is a robust technique which does not need special RNA purification. On the negative side, it is labor intensive and time consuming, thus limiting the numbers of samples which can be analyzed at a given time. LightCycler RT-PCR is very susceptible to even traces of inhibitors, but it allows high-throughput processing of samples.
机译:细菌已经进化出复杂的调节电路,以响应不同的环境来调节其基因表达。为了监测宿主中细菌基因的表达和调控,需要从临床标本中直接进行转录本分析的方法。对于大多数细菌感染,由于存在的细胞数量少且特定转录本的水平低,因此需要扩增目标mRNA。在这里,我们比较了定量逆转录PCR(RT-PCR)的两种方法-使用单管系统进行竞争性RT-PCR,然后进行标准凝胶分析,以及通过荧光共振能量转移技术使用PCR实时检测PCR产物形成的方法。 LightCycler单元。我们直接从临床标本中分离出金黄色葡萄球菌RNA,该标本来自患有慢性金黄色葡萄球菌肺部感染的囊性纤维化患者和无需进一步培养细菌的异物感染动物模型。测试了竞争性RT-PCR和LightCycler RT-PCR对金黄色葡萄球菌组成性表达的促旋酶基因(gyr)和高度调控的α毒素基因(hla)转录的定量能力。两种方法均获得可重复的结果。分别达到104(gyr)和103(hla)拷贝的灵敏度,足以对细菌感染期间的转录本进行定量。总体而言,竞争性RT-PCR是一项可靠的技术,不需要特殊的RNA纯化。不利的一面是劳动强度大且费时,因此限制了在给定时间可以分析的样品数量。 LightCycler RT-PCR甚至对痕量的抑制剂都非常敏感,但是它允许样品的高通量处理。

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