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首页> 外文期刊>BMC Plant Biology >The red fluorescent protein eqFP611: application in subcellular localization studies in higher plants
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The red fluorescent protein eqFP611: application in subcellular localization studies in higher plants

机译:红色荧光蛋白eqFP611:在高等植物的亚细胞定位研究中的应用

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Background Intrinsically fluorescent proteins have revolutionized studies in molecular cell biology. The parallel application of these proteins in dual- or multilabeling experiments such as subcellular localization studies requires non-overlapping emission spectra for unambiguous detection of each label. In the red spectral range, almost exclusively DsRed and derivatives thereof are used today. To test the suitability of the red fluorescent protein eqFP611 as an alternative in higher plants, the behavior of this protein was analyzed in terms of expression, subcellular targeting and compatibility with GFP in tobacco. Results When expressed transiently in tobacco protoplasts, eqFP611 accumulated over night to levels easily detectable by fluorescence microscopy. The native protein was found in the nucleus and in the cytosol and no detrimental effects on cell viability were observed. When fused to N-terminal mitochondrial and peroxisomal targeting sequences, the red fluorescence was located exclusively in the corresponding organelles in transfected protoplasts. Upon co-expression with GFP in the same cells, fluorescence of both eqFP611 and GFP could be easily distinguished, demonstrating the potential of eqFP611 in dual-labeling experiments with GFP. A series of plasmids was constructed for expression of eqFP611 in plants and for simultaneous expression of this fluorescent protein together with GFP. Transgenic tobacco plants constitutively expressing mitochondrially targeted eqFP611 were generated. The red fluorescence was stably transmitted to the following generations, making these plants a convenient source for protoplasts containing an internal marker for mitochondria. Conclusion In plants, eqFP611 is a suitable fluorescent reporter protein. The unmodified protein can be expressed to levels easily detectable by epifluorescence microscopy without adverse affect on the viability of plant cells. Its subcellular localization can be manipulated by N-terminal signal sequences. eqFP611 and GFP are fully compatible in dual-labeling experiments.
机译:背景技术本质上,荧光蛋白已经彻底改变了分子细胞生物学研究。这些蛋白质在双标记或多标记实验(如亚细胞定位研究)中的并行应用需要无重叠的发射光谱,以便对每个标记进行明确检测。在红色光谱范围内,如今几乎仅使用DsRed及其衍生物。为了测试红色荧光蛋白eqFP611在高等植物中作为替代品的适用性,从表达,亚细胞靶向和与GFP在烟草中的相容性方面分析了该蛋白的行为。结果当在烟草原生质体中瞬时表达时,eqFP611在夜间累积达到易于通过荧光显微镜检测的水平。在细胞核和胞浆中发现了天然蛋白,未观察到对细胞活力的有害影响。当与N端线粒体和过氧化物酶体靶向序列融合时,红色荧光仅位于转染的原生质体中的相应细胞器中。在同一细胞中与GFP共表达后,可以轻松地区分eqFP611和GFP的荧光,证明eqFP611在使用GFP进行双标记实验中的潜力。构建了一系列质粒以在植物中表达eqFP611,并同时表达该荧光蛋白和GFP。产生了组成型表达线粒体靶向的eqFP611的转基因烟草植物。红色荧光稳定地传递给后代,使这些植物成为原生质体的便捷来源,原生质体中含有线粒体的内部标记。结论在植物中,eqFP611是一种合适的荧光报告蛋白。未修饰的蛋白质可以表达到易于通过落射荧光显微镜检测到的水平,而对植物细胞的活力没有不利影响。它的亚细胞定位可以被N端信号序列操纵。 eqFP611和GFP在双标记实验中完全兼容。

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