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首页> 外文期刊>Current Opinion in Structural Biology >Fluorescence fluctuation microscopy: a diversified arsenal of methods to investigate molecular dynamics inside cells
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Fluorescence fluctuation microscopy: a diversified arsenal of methods to investigate molecular dynamics inside cells

机译:荧光波动显微镜:研究细胞内部分子动力学的多种方法

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摘要

Fluorescence microscopy provides insight into the subcellular organization of biological functions. However, images are snap shots averaging over a highly dynamic molecular system. Fluorescence fluctuation microscopy, employing similar detection technology, encompasses a powerful arsenal of analysis tools that investigate the molecular heterogeneity in space and time. Analyzing signal fluctuations from small ensembles (several hundred particles) reveals their concentration, the stoichiometry, the stochastic motion, as well as superimposed signatures of the environment such as spatial confinement and binding events. Thus, fluctuation analysis provides access to dynamic molecular properties that can be used to build physical models of cellular processes. In the last decade these methods experienced a remarkable diversification, which we revisit here with a particular focus on live cell applications.
机译:荧光显微镜可以深入了解生物功能的亚细胞组织。但是,图像是在高度动态的分子系统上平均的快照。荧光起伏显微镜,采用类似的检测技术,包含了强大的分析工具库,可以分析时空上的分子异质性。分析来自小合奏(几百个粒子)的信号波动,可以发现它们的集中度,化学计量,随机运动以及环境的叠加特征,例如空间限制和结合事件。因此,波动分析提供了可用于建立细胞过程物理模型的动态分子特性的途径。在过去的十年中,这些方法经历了显着的多样化,在此我们将重点介绍活细胞应用。

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