Köhler R H, Zipfel W R, Webb W W, Hanson M R
Section of Genetics and Development, Cornell University, Ithaca, NY 14853, USA.
Plant J. 1997 Mar;11(3):613-21. doi: 10.1046/j.1365-313x.1997.11030613.x.
To determine how to utilize the green fluorescent protein (GFP) as a marker for subcellular localization and as a label for plant mitochondria in vivo, transgenic suspension cells and tobacco plants expressing GFP with and without a mitochondrial localization signal were generated. The first GFP form used, GFP1, is easily observable in cells with low autofluorescence, such as suspension cells or trichomes, but masked in green tissue. For the visualization of GFP in cells and tissues with high autofluorescence, such as leaf, the use of a very strong promoter (35S35SAMV), a highly expressed modified mGFP4 coding region and a brighter mutant form of GFP (S65T) was necessary. Confocal or two-photon laser scanning microscopy reveal a distinct subcellular localization of the fluorescence in cells expressing GFP or coxIVGFP. In cells expressing untargeted GFP, fluorescence accumulates in the nucleoplasm but is also distributed throughout the cytoplasm. It is excluded from vacuoles, nucleoli and from round bodies that are likely to be leucoplasts. In contrast, fluorescence is localized specifically to mitochondria in cells expressing coxIVGFP fusion protein as shown by co-localization with a mitochondrial-specific dye. This permits the direct observation of mitochondria and mitochondrial movements in living plant cells and tissues throughout plant development. Three-dimensional reconstruction of individual cells can give additional information about the distribution and numbers of mitochondria.
为了确定如何利用绿色荧光蛋白(GFP)作为亚细胞定位的标记以及作为植物线粒体在体内的标记,我们构建了表达带有和不带有线粒体定位信号的GFP的转基因悬浮细胞和烟草植株。所使用的第一种GFP形式GFP1,在诸如悬浮细胞或毛状体等自发荧光较低的细胞中易于观察到,但在绿色组织中会被掩盖。为了在诸如叶片等自发荧光较高的细胞和组织中观察GFP,需要使用非常强的启动子(35S35SAMV)、高表达的修饰mGFP4编码区以及更亮的GFP突变体形式(S65T)。共聚焦或双光子激光扫描显微镜揭示了在表达GFP或coxIVGFP的细胞中荧光有明显的亚细胞定位。在表达非靶向GFP的细胞中,荧光在核质中积累,但也分布于整个细胞质中。它被排除在液泡、核仁以及可能是白色体的圆形体之外。相反,如与线粒体特异性染料共定位所示,在表达coxIVGFP融合蛋白的细胞中,荧光特异性定位于线粒体。这使得在植物整个发育过程中能够直接观察活植物细胞和组织中的线粒体以及线粒体的运动。对单个细胞进行三维重建可以提供有关线粒体分布和数量的更多信息。