Joglekar Ajit P, Salmon E D, Bloom Kerry S
Department of Biology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
Methods Cell Biol. 2008;85:127-51. doi: 10.1016/S0091-679X(08)85007-8.
Genetically encoded fluorescent proteins are an essential tool in cell biology, widely used for investigating cellular processes with molecular specificity. Direct uses of fluorescent proteins include studies of the in vivo cellular localization and dynamics of a protein, as well as measurement of its in vivo concentration. In this chapter, we focus on the use of genetically encoded fluorescent protein as an accurate reporter of in vivo protein numbers. Using the challenge of counting the number of copies of kinetochore proteins in budding yeast as a case study, we discuss the basic considerations in developing a technique for the accurate evaluation of intracellular fluorescence signal. This discussion includes criteria for the selection of a fluorescent protein with optimal characteristics, selection of microscope and image acquisition system components, the design of a fluorescence signal quantification technique, and possible sources of measurement errors. We also include a brief survey of available calibration standards for converting the fluorescence measurements into a number of molecules, since the availability of such a standard usually determines the design of the signal measurement technique as well as the accuracy of final measurements. Finally, we show that, as in the case of budding yeast kinetochore proteins, the in vivo intracellular protein numbers determined from fluorescence measurements can also be employed to elucidate details of cellular structures.
基因编码荧光蛋白是细胞生物学中的一种重要工具,广泛用于以分子特异性研究细胞过程。荧光蛋白的直接用途包括研究蛋白质在体内的细胞定位和动态变化,以及测量其在体内的浓度。在本章中,我们重点关注基因编码荧光蛋白作为体内蛋白质数量准确报告分子的应用。以计算芽殖酵母中动粒蛋白拷贝数的挑战为例,我们讨论了开发一种准确评估细胞内荧光信号技术的基本考量因素。该讨论包括选择具有最佳特性的荧光蛋白的标准、显微镜和图像采集系统组件的选择、荧光信号定量技术的设计以及可能的测量误差来源。我们还简要介绍了将荧光测量值转换为分子数量的可用校准标准,因为此类标准的可用性通常决定了信号测量技术的设计以及最终测量的准确性。最后,我们表明,就像芽殖酵母动粒蛋白的情况一样,通过荧光测量确定的体内细胞内蛋白质数量也可用于阐明细胞结构的细节。