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Use of fluorescence microscopy to study intracellular signaling in bacteria. [Review]

机译:使用荧光显微镜研究细菌中的细胞内信号传导。 [评论]

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摘要

Following the introduction of fluorescent protein tags, the application of fluorescence microscopy in microbial cell biology has advanced the field dramatically. We now understand that bacterial cells are not simple bags of enzymes but have complex internal structures, and that specific intracellular organization plays an important role in a number of processes, including signal transduction. The quantitative nature and high temporal resolution of fluorescence microscopy make it particularly useful for studies of intracellular dynamic systems, such as signaling networks. Applications of fluorescence microscopy in signaling are not limited to studying localization. Several techniques allow researchers to follow real-time dynamics of protein interactions, at steady state or upon stimulation, and therefore to investigate signal propagation, amplification, and integration in the cell. Moreover, microscopy enables investigation of single-cell gene expression kinetics, bringing such concepts as cell individuality and robustness against stochasticity of gene expression to the forefront of signaling studies.
机译:随着荧光蛋白标签的引入,荧光显微镜在微生物细胞生物学中的应用大大推动了该领域的发展。现在我们了解到细菌细胞不是简单的酶包,而是具有复杂的内部结构,并且特定的细胞内组织在许多过程中都起着重要作用,包括信号转导。荧光显微镜的定量性质和高时间分辨率使其特别适用于研究细胞内动态系统,例如信号网络。荧光显微镜在信号转导中的应用不限于研究定位。几种技术使研究人员可以在稳态或受刺激时跟踪蛋白质相互作用的实时动态,从而研究信号在细胞中的传播,扩增和整合。此外,显微镜技术能够研究单细胞基因表达动力学,将诸如细胞个体性和针对基因表达随机性的鲁棒性等概念带入信号研究的前沿。

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