首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Cortical Actin Flow in T Cells Quantified by Spatio-temporal Image Correlation Spectroscopy of Structured Illumination Microscopy Data
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Cortical Actin Flow in T Cells Quantified by Spatio-temporal Image Correlation Spectroscopy of Structured Illumination Microscopy Data

机译:时空图像相关光谱定量分析结构照明显微镜数据在T细胞中的皮质肌动蛋白流量。

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摘要

Filamentous-actin plays a crucial role in a majority of cell processes including motility and, in immune cells, the formation of a key cell-cell interaction known as the immunological synapse. F-actin is also speculated to play a role in regulating molecular distributions at the membrane of cells including sub-membranous vesicle dynamics and protein clustering. While standard light microscope techniques allow generalized and diffraction-limited observations to be made, many cellular and molecular events including clustering and molecular flow occur in populations at length-scales far below the resolving power of standard light microscopy. By combining total internal reflection fluorescence with the super resolution imaging method structured illumination microscopy, the two-dimensional molecular flow of F-actin at the immune synapse of T cells was recorded. Spatio-temporal image correlation spectroscopy (STICS) was then applied, which generates quantifiable results in the form of velocity histograms and vector maps representing flow directionality and magnitude. This protocol describes the combination of super-resolution imaging and STICS techniques to generate flow vectors at sub-diffraction levels of detail. This technique was used to confirm an actin flow that is symmetrically retrograde and centripetal throughout the periphery of T cells upon synapse formation.
机译:丝状肌动蛋白在包括活力在内的大多数细胞过程中起着至关重要的作用,在免疫细胞中,关键的细胞间相互作用(称为免疫突触)的形成也起着至关重要的作用。还推测F-肌动蛋白在调节细胞膜上的分子分布中起作用,包括膜下囊泡动力学和蛋白质聚集。虽然标准光学显微镜技术允许进行广义的和衍射受限的观察,但许多细胞和分子事件(包括聚集和分子流动)发生在群体中,其长度尺度远低于标准光学显微镜的分辨能力。通过将全内反射荧光与超分辨率成像方法构造的照明显微镜相结合,记录了F-肌动蛋白在T细胞免疫突触处的二维分子流。然后应用时空图像相关光谱法(STICS),以速度直方图和代表流量方向性和大小的矢量图的形式生成可量化的结果。该协议描述了超分辨率成像和STICS技术的组合,以在细节的亚衍射级生成流矢量。这项技术被用来确认肌动蛋白流在突触形成后在T细胞的整个外围对称地逆行和向心。

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