Center for Integrated Nanotechnologies, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.
Anal Chem. 2013 May 21;85(10):4938-43. doi: 10.1021/ac303792p. Epub 2013 Apr 25.
Here, we present a modification to single-molecule fluorescence in situ hybridization that enables quantitative detection and analysis of small RNA (sRNA) expressed in bacteria. We show that short (~200 nucleotide) nucleic acid targets can be detected when the background of unbound singly dye-labeled DNA oligomers is reduced through hybridization with a set of complementary DNA oligomers labeled with a fluorescence quencher. By neutralizing the fluorescence from unbound probes, we were able to significantly reduce the number of false positives, allowing for accurate quantification of sRNA levels. Exploiting an automated, mutli-color wide-field microscope and data analysis package, we analyzed the statistics of sRNA expression in thousands of individual bacteria. We found that only a small fraction of either Yersinia pseudotuberculosis or Yersinia pestis bacteria express the small RNAs YSR35 or YSP8, with the copy number typically between 0 and 10 transcripts. The numbers of these RNA are both increased (by a factor of 2.5× for YSR35 and 3.5× for YSP8) upon a temperature shift from 25 to 37 °C, suggesting they play a role in pathogenesis. The copy number distribution of sRNAs from bacteria-to-bacteria are well-fit with a bursting model of gene transcription. The ability to directly quantify expression level changes of sRNA in single cells as a function of external stimuli provides key information on the role of sRNA in cellular regulatory networks.
在这里,我们提出了一种单分子荧光原位杂交的改进方法,该方法能够定量检测和分析细菌中表达的小 RNA(sRNA)。我们表明,当通过与一组用荧光猝灭剂标记的互补 DNA 寡核苷酸杂交来减少未结合的单染料标记 DNA 寡核苷酸的背景时,可以检测到短(约 200 个核苷酸)核酸靶标。通过中和未结合探针的荧光,我们能够显著减少假阳性的数量,从而能够准确地定量 sRNA 水平。利用自动化的、多色宽场显微镜和数据分析软件包,我们分析了数千个单个细菌中 sRNA 表达的统计数据。我们发现,只有一小部分鼠疫耶尔森菌或鼠疫耶尔森菌表达小 RNA YSR35 或 YSP8,其拷贝数通常在 0 到 10 个转录本之间。当温度从 25°C 升高到 37°C 时,这些 RNA 的数量都会增加(YSR35 增加 2.5 倍,YSP8 增加 3.5 倍),表明它们在发病机制中发挥作用。细菌之间 sRNA 的拷贝数分布与基因转录的爆发模型非常吻合。能够直接定量单个细胞中 sRNA 表达水平随外部刺激的变化,为 sRNA 在细胞调控网络中的作用提供了关键信息。