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Nanomechanical DNA Origami pH Sensors

机译:纳米机械DNA折纸pH传感器

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Single-molecule pH sensors have been developed by utilizing molecular imaging of pH-responsive shape transition of nanomechanical DNA origami devices with atomic force microscopy (AFM). Short DNA fragments that can form i-motifs were introduced to nanomechanical DNA origami devices with pliers-like shape (DNA Origami Pliers), which consist of two levers of 170-nm long and 20-nm wide connected at a Holliday-junction fulcrum. DNA Origami Pliers can be observed as in three distinct forms; cross, antiparallel and parallel forms, and cross form is the dominant species when no additional interaction is introduced to DNA Origami Pliers. Introduction of nine pairs of 12-mer sequence (5′-AACCCCAACCCC-3′), which dimerize into i-motif quadruplexes upon protonation of cytosine, drives transition of DNA Origami Pliers from open cross form into closed parallel form under acidic conditions. Such pH-dependent transition was clearly imaged on mica in molecular resolution by AFM, showing potential application of the system to single-molecular pH sensors.
机译:通过利用原子力显微镜(AFM)利用纳米机械DNA折纸装置的pH响应形状转变的分子成像技术,开发了单分子pH传感器。可以形成i-基序的短DNA片段被引入具有钳子形状的纳米机械DNA折纸装置(DNA折纸钳),该装置由两个长170 nm,宽20 nm的杠杆连接在霍利迪结支点上。可以观察到DNA折纸钳的三种不同形式:当没有其他相互作用引入DNA折纸钳时,交叉,反平行和平行形式以及交叉形式是主要种类。引入九对12-mer序列(5'-AACCCCAACCCC-3'),这些序列在胞嘧啶质子化后二聚为i-基序四链体,在酸性条件下驱动DNA折纸钳从敞口交叉形式转变为封闭平行形式。通过AFM在分子分辨率上清楚地在云母上成像了这种pH依赖性转变,显示了该系统在单分子pH传感器中的潜在应用。

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