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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Base- and Structure-Dependent DNA Dinucleotide-Carbon Nanotube Interactions: Molecular Dynamics Simulations and Thermodynamic Analysis
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Base- and Structure-Dependent DNA Dinucleotide-Carbon Nanotube Interactions: Molecular Dynamics Simulations and Thermodynamic Analysis

机译:依赖碱基和结构的DNA二核苷酸-碳纳米管相互作用:分子动力学模拟和热力学分析

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Wrapping of single-wall carbon nanotubes (SWCNTs) by single-stranded DNA (ssDNA) was found to be sequence-dependent, offering properties such as the facilitation of SWCN sorting, ultrafast DNA sequencing, and construction of chemical sensors. Although the interactions of nucleic acids with SWCNTs have been studied thoroughly, the DNA-CNT hybrid especially for the oligonucleotides containing more than one nucleotide has not yet been fully understood. To address this, we have examined new and unconventional DNA dinucleotides involving all 16 combinations of two DNA nucleotides attached with chiral (8,4) and armchair (6,6) SWCNTs using all-atom molecular dynamics simulations and thermodynamic analyses. The 16 dinucleotides with different sequence compositions are found to readily adsorb onto SWCNTs and display interesting binding behaviors such as base flipping, local dynamic stability of structure, and conforma- tional shifting. Four dinucleotides, i.e., AC, AG, GC, and GT, share similar dynamic properties (base turning and conformation transformation) in (8,4) and (6,6) systems. The different dynamic profiles between the compositional isomers with the reverse sequences such as the AG and GA show that the sequence order also impacts the dynamic recognition and binding energy of the ssDNA-CNT hybrid. Clustering-analysis-derived representative conformations imply that general dinucleotides are inclined to spread on the SWCNT surface, and the adjacent bases tend to stretch away from each other. Dinucleotides like AC, AT, CG, CT, GC, GG, TA, TC, TG, and TT adopt similar geometries on both CNTs, suggesting that their structures are not predominantly influenced by the nanotube chirality but controlled by the identity of the base sequence, sequence order, and the basic cylindric structure of SWCNT. In addition, the nucleotide bases have a high degree of orientational order on the nanotube surface and the orientations of each base are significantly affected by the sequence of DNA and the chirality of nanotube, emphasizing that the structural order plays an important role in the binding of DNA and CNTs. However, our energy analysis shows that due to small different curvatures of the CNT surface, the binding affinity of most dinucleotides (except AG, CA, CG, and TG) to the chiral and armchair nanotube is not significantly different. Generally, the dinucleotides constituted with purine and thymine exhibit the lowest binding free energy, resulting from the van der Waals interactions and solvent effects. The thymine-based dinucleotides reduce the solvation free energy of the SWCNT in aqueous solution more effectively as compared to other bases. The present work also demonstrates that the total binding free energy is sequence specific but not merely a sum of individual base-SWCNT binding free energies.
机译:发现单链DNA(ssDNA)包裹单壁碳纳米管(SWCNT)是序列依赖性的,具有促进SWCN分选,超快速DNA测序和化学传感器构建等特性。尽管已经充分研究了核酸与SWCNT的相互作用,但是尚未完全理解DNA-CNT杂合体,特别是对于包含一个以上核苷酸的寡核苷酸。为了解决这个问题,我们使用全原子分子动力学模拟和热力学分析方法研究了涉及手性(8,4)和扶手椅(6,6)SWCNT的两个DNA核苷酸的全部16种组合的新的和非常规的DNA二核苷酸。发现具有不同序列组成的16个二核苷酸易于吸附到SWCNT上,并表现出有趣的结合行为,例如碱基翻转,结构的局部动态稳定性和构象移位。四个二核苷酸,即AC,AG,GC和GT,在(8,4)和(6,6)系统中具有相似的动态特性(碱基翻转和构象转化)。具有反向序列(例如AG和GA)的组成异构体之间的不同动态图谱表明,序列顺序还影响ssDNA-CNT杂化物的动态识别和结合能。源自聚类分析的代表性构象意味着一般的二核苷酸倾向于在S​​WCNT表面上扩散,并且相邻的碱基倾向于彼此远离。 AC,AT,CG,CT,GC,GG,TA,TC,TG和TT等二核苷酸在两个CNT上均具有相似的几何结构,这表明它们的结构主要不受纳米管手性的影响,但受碱基序列同一性的控制,顺序和SWCNT的基本圆柱结构。另外,核苷酸碱基在纳米管表面上具有高度的取向顺序,并且每个碱基的取向均受DNA序列和纳米管的手性的显着影响,强调结构顺序在与DNA的结合中起重要作用。 DNA和CNT。但是,我们的能量分析表明,由于CNT表面曲率的变化很小,大多数二核苷酸(AG,CA,CG和TG除外)与手性和扶手椅状纳米管的结合亲和力没有显着差异。通常,由嘌呤和胸腺嘧啶组成的二核苷酸显示出最低的结合自由能,这是由于范德华相互作用和溶剂作用所致。与其他碱相比,基于胸腺嘧啶的二核苷酸更有效地降低了SWCNT在水溶液中的溶剂化自由能。本工作还证明总的结合自由能是序列特异性的,而不仅仅是各个碱基-SWCNT结合自由能的总和。

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