Clarke James, Wu Hai-Chen, Jayasinghe Lakmal, Patel Alpesh, Reid Stuart, Bayley Hagan
Oxford Nanopore Technologies Ltd, Begbroke Science Park, Sandy Lane, Oxford OX5 1PF, UK.
Nat Nanotechnol. 2009 Apr;4(4):265-70. doi: 10.1038/nnano.2009.12. Epub 2009 Feb 22.
A single-molecule method for sequencing DNA that does not require fluorescent labelling could reduce costs and increase sequencing speeds. An exonuclease enzyme might be used to cleave individual nucleotide molecules from the DNA, and when coupled to an appropriate detection system, these nucleotides could be identified in the correct order. Here, we show that a protein nanopore with a covalently attached adapter molecule can continuously identify unlabelled nucleoside 5'-monophosphate molecules with accuracies averaging 99.8%. Methylated cytosine can also be distinguished from the four standard DNA bases: guanine, adenine, thymine and cytosine. The operating conditions are compatible with the exonuclease, and the kinetic data show that the nucleotides have a high probability of translocation through the nanopore and, therefore, of not being registered twice. This highly accurate tool is suitable for integration into a system for sequencing nucleic acids and for analysing epigenetic modifications.
一种无需荧光标记的DNA测序单分子方法可降低成本并提高测序速度。外切核酸酶可用于从DNA上切割单个核苷酸分子,当与合适的检测系统结合时,这些核苷酸可按正确顺序被识别。在此,我们展示了一种带有共价连接适配分子的蛋白质纳米孔能够连续识别未标记的核苷5'-单磷酸分子,平均准确率达99.8%。甲基化胞嘧啶也能与四种标准DNA碱基:鸟嘌呤、腺嘌呤、胸腺嘧啶和胞嘧啶区分开来。操作条件与外切核酸酶兼容,动力学数据表明核苷酸有很高的概率通过纳米孔易位,因此不会被重复记录。这种高度精确的工具适用于集成到核酸测序和表观遗传修饰分析系统中。