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Automated selection of regions of interest for intensity-based FRET analysis of transferrin endocytic trafficking in normal vs. cancer cells

机译:自动选择感兴趣区域,用于基于强度的FRET分析正常细胞与癌细胞中转铁蛋白的内吞运输

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The overexpression of certain membrane-bound receptors is a hallmark of cancer progression and it has been suggested to affect the organization, activation, recycling and down-regulation of receptor-ligand complexes in human cancer cells. Thus, comparing receptor trafficking pathways in normal vs. cancer cells requires the ability to image cells expressing dramatically different receptor expression levels. Here, we have presented a significant technical advance to the analysis and processing of images collected using intensity based F?rster resonance energy transfer (FRET) confocal microscopy. An automated Image J macro was developed to select region of interests (ROI) based on intensity and statistical-based thresholds within cellular images with reduced FRET signal. Furthermore, SSMD (strictly standardized mean differences), a statistical signal-to-noise ratio (SNR) evaluation parameter, was used to validate the quality of FRET analysis, in particular of ROI database selection. The Image J ROI selection macro together with SSMD as an evaluation parameter of SNR levels, were used to investigate the endocytic recycling of Tfn-TFR complexes at nanometer range resolution in human normal vs. breast cancer cells expressing significantly different levels of endogenous TFR. Here, the FRET-based assay demonstrates that Tfn-TFR complexes in normal epithelial vs. breast cancer cells show a significantly different E% behavior during their endocytic recycling pathway. Since E% is a relative measure of distance, we propose that these changes in E% levels represent conformational changes in Tfn-TFR complexes during endocytic pathway. Thus, our results indicate that Tfn-TFR complexes undergo different conformational changes in normal vs. cancer cells, indicating that the organization of Tfn-TFR complexes at the nanometer range is significantly altered during the endocytic recycling pathway in cancer cells. In summary, improvements in the automated selection of FRET ROI datasets allowed us to detect significant changes in E% with potential biological significance in human normal vs. cancer cells.
机译:某些膜结合受体的过表达是癌症进展的标志,并且已经表明它会影响人类癌细胞中受体-配体复合物的组织,激活,再循环和下调。因此,比较正常细胞与癌细胞中的受体运输途径需要对表达明显不同的受体表达水平的细胞进行成像的能力。在这里,我们已经提出了重要的技术进步,以分析和处理使用基于强度的Fster共振能量转移(FRET)共聚焦显微镜收集的图像。开发了自动Image J宏,以基于具有降低的FRET信号的细胞图像中的强度和基于统计的阈值来选择感兴趣区域(ROI)。此外,SSMD(严格标准化的均值差)是统计信噪比(SNR)评估参数,用于验证FRET分析的质量,尤其是ROI数据库选择的质量。使用Image J ROI选择宏以及SSMD作为SNR水平的评估参数,用于研究纳米级分辨率下表达正常内源TFR水平的人正常与乳腺癌细胞中Tfn-TFR复合物的内吞再循环。在此,基于FRET的测定表明正常上皮与乳腺癌细胞中的Tfn-TFR复合物在其内吞再循环途径中表现出明显不同的E%行为。由于E%是距离的相对度量,因此我们建议E%水平的这些变化代表内吞途径中Tfn-TFR复合体的构象变化。因此,我们的结果表明,Tfn-TFR复合物在正常细胞与癌细胞中发生不同的构象变化,表明在癌细胞的内吞再循环途径中,纳米范围内的Tfn-TFR复合物的组织显着改变。总而言之,FRET ROI数据集自动选择的改进使我们能够检测到E%的重大变化,并在人类正常细胞与癌细胞中具有潜在的生物学意义。

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