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Counting individual DNA molecules by the stochastic attachment of diverse labels

机译:通过随机连接各种标记来计算单个DNA分子

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摘要

We implement a unique strategy for. single molecule counting termed stochastic labeling, where random attachment of a diverse set of labels converts a population of identical DNA molecules into a population of distinct DNA molecules suitable for threshold detection. The conceptual framework for stochastic labeling is developed and experimentally demonstrated by determining the absolute and relative number of selected genes after stochastically labeling approximately 360,000 different fragments of the human genome. The approach does not require the physical separation of molecules and takes advantage of highly parallel methods such as microarray and sequencing technologies to simultaneously count absolute numbers of multiple targets. Stochastic labeling should be particularly useful for determining the absolute numbers of RNA or DNA molecules in single cells.
机译:我们实施独特的策略。单分子计数称为随机标记,其中随机连接的一组不同的标记将一组相同的DNA分子转换为一组适合阈值检测的独特DNA分子。通过随机标记人类基因组的大约360,000个不同片段后,确定所选基因的绝对和相对数目,可以开发和实验证明随机标记的概念框架。该方法不需要分子的物理分离,并利用了高度平行的方法(例如微阵列和测序技术)来同时计数多个靶标的绝对数量。随机标记对于确定单细胞中RNA或DNA分子的绝对数量特别有用。

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