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Subcellular localization-dependent changes in EGFP fluorescence lifetime measured by time-resolved flow cytometry

机译:时间分辨流式细胞仪测量EGFP荧光寿命的亚细胞定位依赖性变化

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摘要

Intracellular protein transport and localization to subcellular regions are processes necessary for normal protein function. Fluorescent proteins can be fused to proteins of interest to track movement and determine localization within a cell. Currently, fluorescence microscopy combined with image processing is most often used to study protein movement and subcellular localization. In this contribution we evaluate a high-throughput time-resolved flow cytometry approach to correlate intracellular localization of human LC3 protein with the fluorescence lifetime of enhanced green fluorescent protein (EGFP). Subcellular LC3 localization to autophagosomes is a marker of the cellular process called autophagy. In breast cancer cells expressing native EGFP and EGFP-LC3 fusion proteins, we measured the fluorescence intensity and lifetime of (i) diffuse EGFP (ii) punctate EGFP-LC3 and (iii) diffuse EGFP-ΔLC3 after amino acid starvation to induce autophagy-dependent LC3 localization. We verify EGFP-LC3 localization with low-throughput confocal microscopy and compare to fluorescence intensity measured by standard flow cytometry. Our results demonstrate that time-resolved flow cytometry can be correlated to subcellular localization of EGFP fusion proteins by measuring changes in fluorescence lifetime.
机译:细胞内蛋白质运输和定位到亚细胞区域是正常蛋白质功能所必需的过程。荧光蛋白可以与目标蛋白融合,以追踪运动并确定细胞内的定位。当前,荧光显微镜结合图像处理最常用于研究蛋白质运动和亚细胞定位。在这项贡献中,我们评估了一种高通量时间分辨流式细胞仪方法,以将人LC3蛋白的细胞内定位与增强型绿色荧光蛋白(EGFP)的荧光寿命相关联。亚细胞LC3定位到自噬体是称为自噬的细胞过程的标志。在表达天然EGFP和EGFP-LC3融合蛋白的乳腺癌细胞中,我们测量了(i)弥漫性EGFP(ii)点状EGFP-LC3和(iii)弥漫性EGFP-ΔLC3的氨基酸饥饿后诱导自噬的荧光强度和寿命。依赖的LC3本地化。我们通过低通量共聚焦显微镜验证了EGFP-LC3的定位,并与通过标准流式细胞仪测量的荧光强度进行了比较。我们的结果表明,通过测量荧光寿命的变化,时间分辨的流式细胞仪可以与EGFP融合蛋白的亚细胞定位相关。

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