Levsky Jeffrey M, Shenoy Shailesh M, Chubb Jonathan R, Hall Charles B, Capodieci Paola, Singer Robert H
Department of Anatomy and Structural Biology, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.
J Cell Biochem. 2007 Oct 15;102(3):609-17. doi: 10.1002/jcb.21495.
We have previously developed technology for multiplexing probes for the detection of transcription of many genes simultaneously within single cells. This has allowed us to determine the spatial localization of multiple genes with respect to each other in the nucleus, and ultimately the expression profile of the cell with respect to surrounding cells in a tissue. Six parameters of transcriptional organization in individual cells from culture and tissue were used to characterize significant differences in intracellular and intercellular expression patterns while preserving cellular morphology and histological context. We found that, unlike yeast, mammalian expression is excluded from the periphery and in addition, a subtle but complex organization underlies the transcriptional activity of these cells, both intra- and intercellularly. The approach has sufficient spatial resolution to be applied to the detection of chromosomal translocations or the identification of cancer cells.
我们之前开发了用于多路复用探针的技术,以在单细胞内同时检测多个基因的转录情况。这使我们能够确定多个基因在细胞核内彼此之间的空间定位,并最终确定细胞相对于组织中周围细胞的表达谱。使用来自培养物和组织的单个细胞中转录组织的六个参数来表征细胞内和细胞间表达模式的显著差异,同时保留细胞形态和组织学背景。我们发现,与酵母不同,哺乳动物的表达被排除在周边区域之外,此外,这些细胞的转录活性在细胞内和细胞间都有一个微妙但复杂的组织基础。该方法具有足够的空间分辨率,可用于检测染色体易位或识别癌细胞。