首页> 外文期刊>Journal of Experimental Botany >Subcellular and single-molecule imaging of plant fluorescent proteins using total internal reflection fluorescence microscopy (TIRFM).
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Subcellular and single-molecule imaging of plant fluorescent proteins using total internal reflection fluorescence microscopy (TIRFM).

机译:使用全内反射荧光显微镜(TIRFM)对植物荧光蛋白进行亚细胞和单分子成像。

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Total internal reflection fluorescence microscopy (TIRFM) has been proven to be an extremely powerful technique in animal cell research for generating high contrast images and dynamic protein conformation information. However, there has long been a perception that TIRFM is not feasible in plant cells because the cell wall would restrict the penetration of the evanescent field and lead to scattering of illumination. By comparative analysis of epifluorescence and TIRF in root cells, it is demonstrated that TIRFM can generate high contrast images, superior to other approaches, from intact plant cells. It is also shown that TIRF imaging is possible not only at the plasma membrane level, but also in organelles, for example the nucleus, due to the presence of the central vacuole. Importantly, it is demonstrated for the first time that this is TIRF excitation, and not TIRF-like excitation described as variable-angle epifluorescence microscopy (VAEM), and it is shown how to distinguish the two techniques in practical microscopy. These TIRF images show the highest signal-to-background ratio, and it is demonstrated that they can be used for single-molecule microscopy. Rare protein events, which would otherwise be masked by the average molecular behaviour, can therefore be detected, including the conformations and oligomerization states of interacting proteins and signalling networks in vivo. The demonstration of the application of TIRFM and single-molecule analysis to plant cells therefore opens up a new range of possibilities for plant cell imaging.
机译:在动物细胞研究中,全内反射荧光显微镜(TIRFM)已被证明是产生高对比度图像和动态蛋白质构象信息的极其强大的技术。但是,长期以来人们一直认为TIRFM在植物细胞中是不可行的,因为细胞壁会限制the逝场的穿透并导致照明散射。通过对根细胞中落射荧光和TIRF的比较分析,证明了TIRFM可以从完整的植物细胞中产生高对比度的图像,优于其他方法。还显示由于中央液泡的存在,TIRF成像不仅可以在质膜水平上进行,而且还可以在细胞器(例如细胞核)中进行。重要的是,首次证明这是TIRF激发,而不是可变角度落射荧光显微镜(VAEM)描述的类似TIRF的激发,并且显示了如何在实际显微镜中区分这两种技术。这些TIRF图像显示出最高的信噪比,并证明它们可用于单分子显微镜。因此,可以检测到罕见的蛋白质事件,否则该蛋白质事件将被平均分子行为所掩盖,包括相互作用的蛋白质和体内信号网络的构象和低聚状态。因此,TIRFM和单分子分析在植物细胞中的应用演示为植物细胞成像开辟了新的可能性。

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