Department of Biomedical Engineering, OHSU Center for Spatial Systems Biomedicine, Oregon Health & Science University, 2730 SW Moody Ave, Portland, OR, 97201, USA.
Quantitative Imaging Systems, Inc., 1502 Fox Chapel Road, Pittsburgh, PA 15238, USA.
Sci Rep. 2017 Nov 28;7(1):16459. doi: 10.1038/s41598-017-16492-1.
We describe here a method, termed immunoFISH, for simultaneous in situ analysis of the composition and distribution of proteins and individual RNA transcripts in single cells. Individual RNA molecules are labeled by hybridization and target proteins are concurrently stained using immunofluorescence. Multicolor fluorescence images are acquired and analyzed to determine the abundance, composition, and distribution of hybridized probes and immunofluorescence. We assessed the ability of immunoFISH to simultaneous quantify protein and transcript levels and distribution in cultured HER2 positive breast cancer cells and human breast tumor samples. We demonstrated the utility of this assay in several applications including demonstration of the existence of a layer of normal myoepithelial KRT14 expressing cells that separate HER2+ cancer cells from the stromal and immune microenvironment in HER2+ invasive breast cancer. Our studies show that immunoFISH provides quantitative information about the spatial heterogeneity in transcriptional and proteomic features that exist between and within cells.
我们在这里描述了一种方法,称为 immunoFISH,用于在单个细胞中同时原位分析蛋白质和单个 RNA 转录本的组成和分布。单个 RNA 分子通过杂交进行标记,同时使用免疫荧光染色目标蛋白。获取多色荧光图像并进行分析,以确定杂交探针和免疫荧光的丰度、组成和分布。我们评估了 immunoFISH 同时定量测定培养的 HER2 阳性乳腺癌细胞和人乳腺癌组织样本中蛋白质和转录本水平及其分布的能力。我们在几个应用中证明了该检测方法的实用性,包括证明存在一层表达正常肌上皮细胞角蛋白 14 的细胞,该层将 HER2+癌细胞与 HER2+浸润性乳腺癌中的基质和免疫微环境分开。我们的研究表明,immunoFISH 提供了关于细胞之间和细胞内转录组和蛋白质组特征存在的空间异质性的定量信息。