纳米孔
DNA
核酸外切酶
核苷酸
劈开
胞嘧啶
化学
核酸
适配器(计算)
结扎测序
胸腺嘧啶
纳米孔测序
计算生物学
生物物理学
材料科学
碱基对
生物化学
纳米技术
DNA测序
生物
DNA聚合酶
基序列
基因
基因组文库
计算机科学
操作系统
作者
James Clarke,Hai‐Chen Wu,Lakmal Jayasinghe,Alpesh Patel,S. Reid,Hagan Bayley
标识
DOI:10.1038/nnano.2009.12
摘要
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.
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