Department of Biomedical Engineering, Boston University, 36 Cummington St., Boston, MA 02215, USA.
Mol Microbiol. 2011 Jun;80(5):1137-47. doi: 10.1111/j.1365-2958.2011.07652.x. Epub 2011 Apr 13.
Studies of gene expression at the single cell level in live bacterial cells represent a new and fertile area of research providing real-time, spatially specified information that cannot be obtained by techniques relying on large cell populations. Before recently, most single-cell studies have been concerned with gene expression at the protein level and explored the spatiotemporal localization and dynamics of different bacterial proteins. However, to fully understand the complex process of gene expression, it is necessary to visualize and quantify RNA molecules in the cellular environment. The first studies analysing the kinetics of RNA transcription and the distribution of RNA in single bacterial cells in real time have recently been reported. Here, I discuss the methods allowing RNA detection in living bacterial cells, the results on RNA kinetics and RNA localization, and the challenges for future research in this area.
在活细菌细胞中单细胞水平的基因表达研究代表了一个新的、富有成效的研究领域,提供了实时的、空间特异性的信息,这些信息是依赖于大细胞群体的技术无法获得的。直到最近,大多数单细胞研究都集中在蛋白质水平的基因表达上,探索了不同细菌蛋白的时空定位和动态。然而,要全面了解基因表达的复杂过程,有必要在细胞环境中可视化和量化 RNA 分子。最近报道了首次分析 RNA 转录动力学和单个细菌细胞中 RNA 分布的实时研究。在这里,我讨论了在活细菌细胞中检测 RNA 的方法、关于 RNA 动力学和 RNA 定位的结果,以及该领域未来研究的挑战。