首页> 外文会议>Conference on Multiphoton Microscopy in the Biomedical Sciences IV; 20040125-20040127; San Jose,CA; US >FRET measurements between small numbers of molecules identifies subtle changes in receptor interactions
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FRET measurements between small numbers of molecules identifies subtle changes in receptor interactions

机译:少量分子之间的FRET测量可确定受体相互作用的细微变化

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Overexpression of HER2 alters the cellular behavior of EGF receptor (EGFR) and itself, with great implications on cell fate. To understand the molecular interactions underlying these alterations, we quantified the association between the two receptors by looking at efficiency changes in fluorescence resonance energy transfer (FRET) between a small number of molecules at the membrane of living cells. Human mammary epithelial (HME) cells expressing varying degrees of HER2 were studied, to identify and compare the degree of receptors interactions as a function of HER2 overexpression. A high resolution wide-field laser microscope combined with a high sensitivity cooled CCD camera was used to capture simultaneously donor and acceptor emissions. Alternating between green and red lasers every 80 msec, donor, FRET, and acceptor images were acquired and were used to calculate FRET efficiency. Automated image analysis was developed to create FRET efficiency maps from overlapping donor, acceptor and FRET images, and derive FRET efficiency histograms to quantify receptor-receptor interactions pixel by pixel. This approach enabled us to detect subtle changes in the average distance between EGFR molecules, and between EGFR and HER2. We found pre-existing EGFR homoassociations, and EGFR-HER2 heteroassociations in cells overexpressing HER2, and identified the changes in these interactions with ligand stimulation. These observations demonstrate the power of FRET measurements between small numbers of molecules in identifying subtle changes in molecular interactions in living cell.
机译:HER2的过表达改变了EGF受体(EGFR)及其自身的细胞行为,对细胞命运具有重大影响。为了了解这些改变背后的分子相互作用,我们通过观察活细胞膜上少量分子之间荧光共振能量转移(FRET)的效率变化来量化两个受体之间的关联。研究了表达不同程度的HER2的人乳腺上皮(HME)细胞,以鉴定和比较受体相互作用的程度与HER2过表达的关系。高分辨率宽视场激光显微镜与高灵敏度冷却的CCD相机结合使用,可同时捕获供体和受体的发射。每80毫秒在绿色和红色激光之间进行交替,获取供体,FRET和受体图像,并用于计算FRET效率。开发了自动图像分析,以从重叠的供体,受体和FRET图像创建FRET效率图,并导出FRET效率直方图以逐像素量化受体-受体相互作用。这种方法使我们能够检测到EGFR分子之间以及EGFR和HER2之间平均距离的细微变化。我们发现过表达HER2的细胞中已经存在的EGFR同源关联和EGFR-HER2异缔合,并确定了配体刺激下这些相互作用的变化。这些观察结果证明了在少数分子之间进行FRET测量对识别活细胞中分子相互作用的细微变化的功效。

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