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Digital Encoding of Cellular mRNAs Enabling Precise and Absolute Gene Expression Measurement by Single-Molecule Counting

机译:通过单分子计数实现精确和绝对基因表达测量的细胞mRNA的数字编码。

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We present a new approach for the sensitive detection and accurate quantitation of messenger ribonucleic acid (mRNA) gene transcripts in single cells. First, the entire population of mRNAs is encoded with molecular barcodes during reverse transcription. After amplification of the gene targets of interest, molecular barcodes are counted by sequencing or scored on a simple hybridization detector to reveal the number of molecules in the starting sample. Since absolute quantities are measured, calibration to standards is unnecessary, and many of the relative quantitation challenges such as polymerase chain reaction (PCR) bias are avoided. We apply the method to gene expression analysis of minute sample quantities and demonstrate precise measurements with sensitivity down to sub single-cell levels. The method is an easy, single-tube, end point assay utilizing standard thermal cyclers and PCR reagents. Accurate and precise measurements are obtained without any need for cycle-to-cycle intensity-based real-time monitoring or physical partitioning into multiple reactions (e.g., digital PCR). Further, since all mRNA molecules are encoded with molecular barcodes, amplification can be used to generate more material for multiple measurements and technical replicates can be carried out on limited samples. The method is particularly useful for small sample quantities, such as single-cell experiments. Digital encoding of cellular content preserves true abundance levels and overcomes distortions introduced by amplification.
机译:我们提出了一种灵敏检测和准确定量单细胞中信使核糖核酸(mRNA)基因转录物的新方法。首先,在逆转录过程中,整个mRNA群体都用分子条形码编码。扩增目标基因靶标后,通过测序对分子条形码进行计数或在简单的杂交检测器上对分子条形码进行评分,以显示起始样品中的分子数量。由于测量的是绝对量,因此无需对标准品进行校准,并且避免了许多相对定量的挑战,例如聚合酶链反应(PCR)偏倚。我们将这种方法应用于微小样品量的基因表达分析,并展示了精确的测量方法,灵敏度低至亚单细胞水平。该方法是一种使用标准热循环仪和PCR试剂的简便,单管,终点测定方法。无需进行基于循环强度的实时监控或将其物理划分为多个反应(例如数字PCR)即可获得准确而精确的测量结果。此外,由于所有mRNA分子均用分子条形码编码,因此扩增可用于生成更多材料进行多次测量,并且可对有限的样品进行技术复制。该方法对于少量样品(例如单细胞实验)特别有用。蜂窝内容的数字编码可保留真实的丰度级别,并克服了放大带来的失真。

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