化学
DNA聚合酶
DNA钳
碱基对
原子力显微镜
聚合酶
单分子实时测序
DNA
生物物理学
核苷酸
纳米技术
聚合酶链反应
DNA测序
计算生物学
分子生物学
生物化学
基因
生物
逆转录酶
DNA测序器
材料科学
作者
Youngkyu Kim,Eung‐Sam Kim,Yoonhee Lee,Joung‐Hun Kim,Bong Chu Shim,Seong Moon Cho,Jeong Soo Lee,Joon Won Park
摘要
The importance of DNA sequencing in the life sciences and personalized medicine is continually increasing. Single-molecule sequencing methods have been developed to analyze DNA directly without the need for amplification. Here, we present a new approach to sequencing single DNA molecules using atomic force microscopy (AFM). In our approach, four surface-conjugated nucleotides were examined sequentially with a DNA polymerase-immobilized AFM tip. By observing the specific rupture events upon examination of a matching nucleotide, we could determine the template base bound in the polymerase’s active site. The subsequent incorporation of the complementary base in solution enabled the next base to be read. Additionally, we observed that the DNA polymerase could incorporate the surface-conjugated dGTP when the applied force was controlled by employing the force-clamp mode.
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