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在其自然环境中观察蛋白质:活细胞。

Observing proteins in their natural habitat: the living cell.

作者信息

Bastiaens P I, Pepperkok R

机构信息

EMBL Heidelberg, Meyerhofstr. 1, 69117 Heidelberg, Germany.

出版信息

Trends Biochem Sci. 2000 Dec;25(12):631-7. doi: 10.1016/s0968-0004(00)01714-x.

Abstract

Fluorescence microscopy has played a tremendous role in uncovering the morphological features of cells and the expression pattern of proteins by immunofluorescence. Since the discovery of green-fluorescent proteins (GFPs), this technique has undergone a revival in the life sciences as the spatial distribution of ectopically expressed fusion proteins inside living cells can now be followed more easily. By further exploiting the photophysical properties of the emitted fluorescence with microspectroscopic methods, spatial information on the biochemical parameters of intracellular processes and reactions can be obtained. This possibility will not only play an important role in the understanding of biochemical reactions in signal processing and fidelity but also help to uncover the molecular mechanisms of organelle and cell morphogenesis.

摘要

荧光显微镜在通过免疫荧光揭示细胞的形态特征和蛋白质的表达模式方面发挥了巨大作用。自从绿色荧光蛋白(GFP)被发现以来,这项技术在生命科学领域迎来了复兴,因为现在可以更轻松地追踪活细胞内异位表达的融合蛋白的空间分布。通过用显微光谱方法进一步利用发射荧光的光物理性质,可以获得关于细胞内过程和反应的生化参数的空间信息。这种可能性不仅将在理解信号处理和保真度中的生化反应方面发挥重要作用,还将有助于揭示细胞器和细胞形态发生的分子机制。

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