首页> 美国卫生研究院文献>Journal of Bacteriology >Changes in rRNA Levels during Stress Invalidates Results from mRNA Blotting: Fluorescence In Situ rRNA Hybridization Permits Renormalization for Estimation of Cellular mRNA Levels
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Changes in rRNA Levels during Stress Invalidates Results from mRNA Blotting: Fluorescence In Situ rRNA Hybridization Permits Renormalization for Estimation of Cellular mRNA Levels

机译:应激过程中rRNA水平的变化使mRNA印迹结果无效:荧光原位rRNA杂交允许重新归一化以估计细胞mRNA水平

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摘要

Regulation of gene expression can be analyzed by a number of different techniques. Some techniques monitor the level of specific mRNA directly, and others monitor indirectly by determining the level of enzymes encoded by the mRNA. Each method has its own inherent way of normalization. When results obtained by these techniques are compared between experiments in which differences in growth rates, strains, or stress treatments occur, the normalization procedure may have a significant impact on the results. In this report we present a solution to the normalization problem in RNA slot blotting experiments, in which mRNA levels routinely are normalized to a fixed amount of extracted total RNA. The cellular levels of specific mRNA species were estimated using a renormalization with the total RNA content per cell. By a combination of fluorescence in situ rRNA hybridization, which estimates the relative level of rRNA per cell, and slot blotting to rRNA probes, which estimates the level of rRNA per extracted total RNA, the amount of RNA per cell was calculated in a series of heat shock experiments with the gram-positive bacterium Lactococcus lactis. It was found that the level of rRNA per cell decreased to 30% in the course of the heat shock. This lowered ribosome level led to a decrease in the total RNA content, resulting in a gradually increasing overestimation of the mRNA levels throughout the experiment. Using renormalized cellular mRNA levels, the HrcA-mediated regulation of the genes in the hrcA-grpE-dnaK operon was analyzed. The hybridization data suggested a complex heat shock regulation indicating that the mRNA levels continued to rise after 30 min, but after renormalization the calculated average cellular levels exhibited a much simpler induction pattern, eventually attaining a moderately increased value.
机译:基因表达的调节可以通过许多不同的技术来分析。一些技术直接监测特定mRNA的水平,而其他技术则通过确定mRNA编码的酶的水平间接监测。每种方法都有其固有的标准化方法。当在发生增长率,应变或应力处理差异的实验之间比较通过这些技术获得的结果时,归一化程序可能会对结果产生重大影响。在本报告中,我们提出了解决RNA狭槽印迹实验中标准化问题的解决方案,在该实验中,通常将mRNA水平标准化为固定量的提取总RNA。使用每个细胞总RNA含量的重新归一化估计特定mRNA种类的细胞水平。通过结合荧光原位rRNA杂交(估计每个细胞的rRNA的相对水平)和缝隙印迹到rRNA探针(估计每个提取的总RNA的rRNA的水平)的组合,可以在一系列计算中计算每个细胞的RNA量。革兰氏阳性细菌乳酸乳球菌的热休克实验。发现在热激过程中每个细胞的rRNA水平降低至30%。降低的核糖体水平导致总RNA含量降低,从而导致整个实验过程中对mRNA水平的逐渐高估。使用重新标准化的细胞mRNA水平,分析了hrcA-grpE-dnaK操纵子中HrcA介导的基因调控。杂交数据表明,复杂的热激调节表明,mRNA水平在30分钟后继续升高,但是在重新归一化之后,计算出的平均细胞水平显示出简单得多的诱导模式,最终获得了适度增加的值。

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