论文标题

DNA支架载体辅助蛋白通过固态纳米孔易位

DNA Scaffold Carrier Assisted Protein Translocation Through Solid-State Nanopore

论文作者

Yang, Jing, Wang, Juan, Wu, Ranfeng, Chen, Yiming, Zhang, Cheng

论文摘要

在单分子水平的生物分子检测在生物传感和生物医学诊断领域具有重要的应用。固态纳米孔(SS-Nanobore)是执行单分子检测的有效工具,这是由于其独特的无标签和样品消耗的特性。小型生物分子的当前SS-Nananopore易位是由电子场力驱动的,因此很容易受到靶分子的电荷,形状和大小的影响。因此,控制生物分子以通过SS-Nanobore转移,特别是对于具有复杂构象和不同电荷的蛋白质而言,这仍然是一个巨大的挑战。对于这个问题,我们开发了一种DNA支架载体辅助策略,以通过SS-Nananopore帮助蛋白质易位,从而促进靶蛋白检测。采用DNA载体载荷效果的优势,当前的信号与噪声比显着提高。我们提出的方法是敏感,方便的,可以检测实时样品纳米孔易位。这种方法为SS-Nanobore检测开辟了广泛的应用,并促进了单分子检测的发展。

The detection of biomolecules at the single molecular level have important applications in the fields of biosensing and biomedical diagnosis. Solid state nanopore (SS-nanopore) is an effective tool to perform the single molecular detection, due to its unique properties of label-free and less sample consumption. The current SS-nanopore translocations of small biomolecules are driven by the electronic field force, thus easily influenced by the charges, shapes and sizes of the target molecules. Therefore, it remains a great challenge to control biomolecules to translocate through SS-nanopore, particularly for the protein with complex conformations and different charges. Towards this problem, we developed a DNA scaffold carrier assisted strategy to help protein translocation through SS-nanopore, thus facilitating the target protein detection. Taking advantages of a DNA carrier loading effect, the current signal to noise ratios are significantly improved. Our proposed method is sensitive, convenient and can detect real-time sample nanopore translocations. This method opens up a wide range of applications for SS-nanopore detection and promote the development of single molecular detections.

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