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Fluctuation localization imaging-based fluorescence in situ hybridization (fliFISH) for accurate detection and counting of RNA copies in single cells

机译:基于波动定位成像的荧光原位杂交(fliFISH)可准确检测和计数单个细胞中的RNA拷贝

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摘要

Quantitative gene expression analysis in intact single cells can be achieved using single molecule-based fluorescence in situ hybridization (smFISH). This approach relies on fluorescence intensity to distinguish between true signals, emitted from an RNA copy hybridized with multiple oligonucleotide probes, and background noise. Thus, the precision in smFISH is often compromised by partial or nonspecific probe binding and tissue autofluorescence, especially when only a small number of probes can be fitted to the target transcript. Here we provide an accurate approach for setting quantitative thresholds between true and false signals, which relies on on-off duty cycles of photoswitchable dyes. This fluctuation localization imaging-based FISH (fliFISH) uses on-time fractions (measured over a series of exposures) collected from transcripts bound to as low as 8 probes, which are distinct from on-time fractions collected from nonspecifically bound probes or autofluorescence. Using multicolor fliFISH, we identified radial gene expression patterns in mouse pancreatic islets for insulin, the transcription factor, NKX2-2 and their ratio (Nkx2-2/Ins2). These radial patterns, showing higher values in β cells at the islet core and lower values in peripheral cells, were lost in diabetic mouse islets. In summary, fliFISH provides an accurate, quantitative approach for detecting and counting true RNA copies and rejecting false signals by their distinct on-time fractions, laying the foundation for reliable single-cell transcriptomics.
机译:使用基于单分子的荧光原位杂交(smFISH)可实现完整单细胞的定量基因表达分析。这种方法依靠荧光强度来区分从与多个寡核苷酸探针杂交的RNA副本发出的真实信号和背景噪声。因此,smFISH的精确度通常会受到部分或非特异性探针结合以及组织自发荧光的影响,尤其是当只有少量探针可与目标转录本相配时。在这里,我们提供了一种在真信号和假信号之间设置定量阈值的准确方法,该方法依赖于可光转换染料的开关占空比。这种基于波动定位成像的FISH(fliFISH)使用从与低至8个探针结合的转录本中收集的实时分数(在一系列曝光中测量),这与从非特异性结合的探针或自发荧光中收集的实时分数不同。使用多色fliFISH,我们在小鼠胰岛中鉴定了胰岛素,转录因子,NKX2-2及其比例(Nkx2-2 / Ins2)的放射状基因表达模式。这些径向模式在胰岛核心的β细胞中显示较高的值,而在外周细胞中显示较低的值,这些在糖尿病小鼠胰岛中消失了。总而言之,fliFISH提供了一种准确,定量的方法来检测和计数真实的RNA拷贝,并通过其不同的按时分数拒绝错误信号,从而为可靠的单细胞转录组学奠定了基础。

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