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Quantitative assessment of ratiometric bimolecular beacons as a tool for imaging single engineered RNA transcripts and measuring gene expression in living cells

机译:比例双分子信标的定量评估可作为对单个工程RNA转录本成像并测量活细胞中基因表达的工具

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摘要

Recently, we developed an oligonucleotide-based probe, ratiometric bimolecular beacon (RBMB), which generates a detectable fluorescent signal in living cells that express the target RNA. Here, we show that RBMBs can also be used to image single RNA transcripts in living cells, when the target RNA is engineered to contain as few as four hybridization sites. Moreover, comparison with single-molecule fluorescence in situ hybridization confirmed that RBMBs could be used to accurately quantify the number of RNA transcripts within individual cells. Measurements of gene expression could be acquired within 30 min and using a wide range of RBMB concentrations. The ability to acquire accurate measurements of RNA copy number in both HT-1080 cells and CHO cells also suggests that RBMBs can be used to image and quantify single RNA transcripts in a wide range of cell lines. Overall, these findings highlight the robustness and versatility of RBMBs as a tool for imaging RNA in live cells. We envision that the unique capabilities of RBMBs will open up new avenues for RNA research.
机译:最近,我们开发了一种基于寡核苷酸的探针,比例双分子信标(RBMB),该探针在表达靶RNA的活细胞中产生可检测的荧光信号。在这里,我们显示,当目标RNA被设计为仅包含四个杂交位点时,RBMBs也可用于在活细胞中成像单个RNA转录物。此外,与单分子荧光原位杂交的比较证实,RBMBs可用于准确定量单个细胞内RNA转录物的数量。可以在30分钟内使用多种RBMB浓度获得基因表达的测量值。能够准确测量HT-1080细胞和CHO细胞中RNA拷贝数的能力还表明,RBMB可以用于成像和量化各种细胞系中的单个RNA转录物。总体而言,这些发现突出了RBMB作为在活细胞中对RNA成像的工具的鲁棒性和多功能性。我们设想,RBMB的独特功能将为RNA研究开辟新的途径。

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