Hur Kwang-Ho, Macdonald Patrick J, Berk Serkan, Angert C Isaac, Chen Yan, Mueller Joachim D
School of Physics and Astronomy, University of Minnesota, Minneapolis, Minnesota, United States of America.
Department of Biomedical Engineering, University of Minnesota, Minneapolis, Minnesota, United States of America.
PLoS One. 2014 May 12;9(5):e97440. doi: 10.1371/journal.pone.0097440. eCollection 2014.
The brightness of fluorescently labeled proteins provides an excellent marker for identifying protein interactions in living cells. Quantitative interpretation of brightness, however, hinges on a detailed understanding of the processes that affect the signal fluctuation of the fluorescent label. Here, we focus on the cumulative influence of photobleaching on brightness measurements in cells. Photobleaching within the finite volume of the cell leads to a depletion of the population of fluorescently labeled proteins with time. The process of photodepletion reduces the fluorescence signal which biases the analysis of brightness data. Our data show that even small reductions in the signal can introduce significant bias into the analysis of the data. We develop a model that quantifies the bias and introduce an analysis method that accurately determines brightness in the presence of photodepletion as verified by experiments with mammalian and yeast cells. In addition, photodepletion experiments with the fluorescent protein EGFP reveal the presence of a photoconversion process, which leads to a marked decrease in the brightness of the EGFP protein. We also identify conditions where the effect of EGFP's photoconversion on brightness experiments can be safely ignored.
荧光标记蛋白的亮度为识别活细胞中的蛋白相互作用提供了一个出色的标记。然而,亮度的定量解释取决于对影响荧光标记信号波动过程的详细理解。在这里,我们关注光漂白对细胞亮度测量的累积影响。细胞有限体积内的光漂白导致荧光标记蛋白群体随时间减少。光消耗过程会降低荧光信号,这会使亮度数据分析产生偏差。我们的数据表明,即使信号有微小的降低也会给数据分析带来显著偏差。我们开发了一个量化偏差的模型,并引入了一种分析方法,该方法经哺乳动物和酵母细胞实验验证,能在存在光消耗的情况下准确测定亮度。此外,对荧光蛋白EGFP进行的光消耗实验揭示了一种光转换过程的存在,这会导致EGFP蛋白的亮度显著降低。我们还确定了在哪些条件下可以安全地忽略EGFP光转换对亮度实验的影响。