Yu You-Sheng, Tan Rong-Ri, Ding Hong-Ming
School of Science, East China University of Technology Nanchang 330013 China.
Laboratory of Solid State Microstructures, Nanjing University Nanjing 210093 China.
RSC Adv. 2024 Jan 5;14(1):405-412. doi: 10.1039/d3ra05432b. eCollection 2024 Jan 2.
As one of the most promising types of label-free nanopores has great potential for DNA sequencing fast detection of different DNA bases. As one of the most promising types of label-free nanopores, two-dimensional nanopore materials have been developed over the past two decades. However, how to detect different DNA bases efficiently and accurately is still a challenging problem. In the present work, the translocation of four homogeneous DNA strands (, poly(A), poly(C), poly(G), and poly(T)) through two-dimensional transition-metal carbide (MXene) membrane nanopores with different surface terminal groups is investigated all-atom molecular dynamics simulations. Interestingly, it is found that the four types of bases can be distinguished by different ion currents and dwell times when they are transported through the TiC(OH) nanopore. This is mainly attributed to the different orientation and position distributions of the bases, the hydrogen bonding inside the MXene nanopore, and the interaction of the ssDNA with the nanopore. The present study enhances the understanding of the interaction between DNA strands and MXene nanopores with different functional groups, which may provide useful guidelines for the design of MXene-based devices for DNA sequencing in the future.
作为最具前景的无标记纳米孔类型之一,在DNA测序中对不同DNA碱基进行快速检测具有巨大潜力。作为最具前景的无标记纳米孔类型之一,二维纳米孔材料在过去二十年中得到了发展。然而,如何高效准确地检测不同的DNA碱基仍然是一个具有挑战性的问题。在本工作中,通过全原子分子动力学模拟研究了四种均一的DNA链(聚腺苷酸、聚胞嘧啶、聚鸟苷酸和聚胸腺嘧啶)通过具有不同表面端基的二维过渡金属碳化物(MXene)膜纳米孔的转位情况。有趣的是,发现当这四种碱基通过TiC(OH)纳米孔传输时,可以通过不同的离子电流和停留时间来区分。这主要归因于碱基的不同取向和位置分布、MXene纳米孔内部的氢键以及单链DNA与纳米孔的相互作用。本研究增进了对DNA链与具有不同官能团的MXene纳米孔之间相互作用的理解,这可能为未来基于MXene的DNA测序设备设计提供有用的指导。