Zhang Liuyang, Wang Xianqiao
College of Engineering, University of Georgia, Athens, GA 30602, USA.
Nanomaterials (Basel). 2016 Jun 6;6(6):111. doi: 10.3390/nano6060111.
The single molecule detection associated with DNA sequencing has motivated intensive efforts to identify single DNA bases. However, little research has been reported utilizing single-layer hexagonal boron nitride (hBN) for DNA sequencing. Here we employ molecular dynamics simulations to explore pathways for single-strand DNA (ssDNA) sequencing by nanopore on the hBN sheet. We first investigate the adhesive strength between nucleobases and the hBN sheet, which provides the foundation for the hBN-base interaction and nanopore sequencing mechanism. Simulation results show that the purine base has a more remarkable energy profile and affinity than the pyrimidine base on the hBN sheet. The threading of ssDNA through the hBN nanopore can be clearly identified due to their different energy profiles and conformations with circular nanopores on the hBN sheet. The sequencing process is orientation dependent when the shape of the hBN nanopore deviates from the circle. Our results open up a promising avenue to explore the capability of DNA sequencing by hBN nanopore.
与DNA测序相关的单分子检测激发了人们识别单个DNA碱基的大量努力。然而,利用单层六方氮化硼(hBN)进行DNA测序的研究报道较少。在此,我们采用分子动力学模拟来探索hBN片上纳米孔对单链DNA(ssDNA)测序的途径。我们首先研究了核碱基与hBN片之间的粘附强度,这为hBN与碱基的相互作用及纳米孔测序机制提供了基础。模拟结果表明,在hBN片上,嘌呤碱基比嘧啶碱基具有更显著的能量分布和亲和力。由于ssDNA与hBN片上圆形纳米孔具有不同的能量分布和构象,因此可以清晰地识别出ssDNA穿过hBN纳米孔的过程。当hBN纳米孔的形状偏离圆形时,测序过程与方向有关。我们的结果为探索hBN纳米孔进行DNA测序的能力开辟了一条有前景的途径。