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FLIPPER a combinatorial probe for correlated live imaging and electron microscopy allows identification and quantitative analysis of various cells and organelles

机译:FLIPPER是用于相关实时成像和电子显微镜的组合探针可以鉴定和定量分析各种细胞和细胞器

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摘要

Ultrastructural examination of cells and tissues by electron microscopy (EM) yields detailed information on subcellular structures. However, EM is typically restricted to small fields of view at high magnification; this makes quantifying events in multiple large-area sample sections extremely difficult. Even when combining light microscopy (LM) with EM (correlated LM and EM: CLEM) to find areas of interest, the labeling of molecules is still a challenge. We present a new genetically encoded probe for CLEM, named “FLIPPER”, which facilitates quantitative analysis of ultrastructural features in cells. FLIPPER consists of a fluorescent protein (cyan, green, orange, or red) for LM visualization, fused to a peroxidase allowing visualization of targets at the EM level. The use of FLIPPER is straightforward and because the module is completely genetically encoded, cells can be optimally prepared for EM examination. We use FLIPPER to quantify cellular morphology at the EM level in cells expressing a normal and disease-causing point-mutant cell-surface protein called EpCAM (epithelial cell adhesion molecule). The mutant protein is retained in the endoplasmic reticulum (ER) and could therefore alter ER function and morphology. To reveal possible ER alterations, cells were co-transfected with color-coded full-length or mutant EpCAM and a FLIPPER targeted to the ER. CLEM examination of the mixed cell population allowed color-based cell identification, followed by an unbiased quantitative analysis of the ER ultrastructure by EM. Thus, FLIPPER combines bright fluorescent proteins optimized for live imaging with high sensitivity for EM labeling, thereby representing a promising tool for CLEM.Electronic supplementary materialThe online version of this article (doi:10.1007/s00441-015-2142-7) contains supplementary material, which is available to authorized users.
机译:通过电子显微镜(EM)对细胞和组织进行超微结构检查,可获得有关亚细胞结构的详细信息。但是,EM通常仅限于高放大率下的小视野。这使得量化多个大面积样本区域中的事件非常困难。即使将光学显微镜(LM)与EM(相关的LM和EM:CLEM)结合使用以找到感兴趣的区域,分子的标记仍然是一个挑战。我们提出了一种新的CLEM基因编码探针,名为“ FLIPPER”,它有助于定量分析细胞中的超微结构特征。 FLIPPER由用于LM可视化的荧光蛋白(青色,绿色,橙色或红色)组成,与过氧化物酶融合,可以在EM水平上可视化目标。 FLIPPER的使用非常简单,并且由于该模块是完全由基因编码的,因此可以为EM检查优化准备细胞。我们使用FLIPPER来量化表达正常和引起疾病的点突变细胞表面蛋白EpCAM(上皮细胞粘附分子)的细胞在EM水平的细胞形态。突变蛋白保留在内质网(ER)中,因此可以改变ER功能和形态。为了揭示可能的ER改变,将细胞与颜色编码的全长或突变体EpCAM和靶向ER的FLIPPER共转染。 CLEM检查混合细胞群体可以进行基于颜色的细胞鉴定,然后通过EM对ER超微结构进行无偏定量分析。因此,FLIPPER将针对实时成像优化的明亮荧光蛋白与对EM标记的高灵敏度结合在一起,从而成为CLEM的有前途的工具。电子补充材料本文的在线版本(doi:10.1007 / s00441-015-2142-7)包含补充材料,可供授权用户使用。

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