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Reading DNA at single-nucleotide resolution with a mutant MspA nanopore and phi29 DNA polymerase

机译:使用突变MspA纳米孔和phi29 DNA聚合酶以单核苷酸分辨率读取DNA

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摘要

Nanopore technologies are being developed for fast and direct sequencing of single DNA molecules through detection of ionic current modulations as DNA passes through a pore's constriction(1,2). Here we demonstrate the ability to resolve changes in current that correspond to a known DNA sequence by combining the high sensitivity of a mutated form of the protein pore Mycobacterium smegmatis porin A (MspA)(3) with phi29 DNA polymerase (DNAP)(4), which controls the rate of DNA translocation through the pore. As phi29 DNAP synthesizes DNA and functions like a motor to pull a single-stranded template through MspA, we observe well-resolved and reproducible ionic current levels with median durations of similar to 28 ms and ionic current differences of up to 40 pA. Using six different DNA sequences with readable regions 42-53 nucleotides long, we record current traces that map to the known DNA sequences. With single-nucleotide resolution and DNA translocation control, this system integrates solutions to two long-standing hurdles to nanopore sequencing(2).
机译:纳米孔技术正在被开发用于通过DNA穿过孔的收缩区域时检测离子电流调制来对单个DNA分子进行快速直接测序(1,2)。在这里,我们证明了通过结合突变形式的蛋白孔耻垢分枝杆菌孔蛋白A(MspA)(3)和phi29 DNA聚合酶(DNAP)(4)的高灵敏度,可以解决与已知DNA序列相对应的电流变化的能力。 ,它控制DNA通过孔的转运速度。由于phi29 DNAP合成DNA并像马达一样通过MspA拉动单链模板,因此我们观察到可分辨和可再现的离子电流水平,中值持续时间类似于28 ms,离子电流差高达40 pA。使用六个具有42-53个核苷酸长的可读区域的不同DNA序列,我们记录了映射到已知DNA序列的当前迹线。该系统具有单核苷酸分辨率和DNA易位控制功能,将解决方案结合了两个长期存在的难题,可进行纳米孔测序(2)。

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