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碳纳米管结合可逆环肽的分子动力学研究。

Molecular dynamics study of a carbon nanotube binding reversible cyclic peptide.

机构信息

Department of Chemistry and Alan G MacDiarmid NanoTech Institute, The University of Texas at Dallas, Richardson, Texas 75080, USA.

出版信息

ACS Nano. 2010 May 25;4(5):2539-46. doi: 10.1021/nn901484w.

Abstract

Many potential biological applications of single-walled carbon nanotubes (SWNTs) require their dispersion in aqueous conditions. Recently, Dieckmann et al. designed a series of reversible cyclic peptides (RCPs) which exist in linear or cyclized states through controlled formation of an intramolecular disulfide bond between terminal Cys residues. These RCP-Cys peptides have been shown to disperse SWNTs in aqueous solution and form peptide/SWNT complexes which are stable against dilution. However, the detailed molecular interactions between the peptide and the SWNT in an aqueous environment remain unexplored. Here, fully atomistic molecular dynamics simulations were used to study the effect of RCP-Cys at the water/SWNT interface. We show that the peptide-SWNT association is thermodynamically favorable through free energy calculations. Furthermore, we analyze the structure and energetics of the possible beta-sheet-like ring stacking that can form on the SWNT through peptide backbone hydrogen bonding. Our results reveal the thermodynamic driving force for the formation of an ordered, self-assembled RCP-Cys/SWNT complex, which provides insight into peptide design strategies for future applications.

摘要

许多单壁碳纳米管(SWNTs)的潜在生物应用需要将其分散在水相条件下。最近,Dieckmann 等人设计了一系列可逆环肽(RCPs),这些环肽通过末端半胱氨酸残基之间形成的分子内二硫键在线性或环化状态之间存在。这些 RCP-Cys 肽已被证明可在水溶液中分散 SWNTs,并形成对稀释稳定的肽/SWNT 复合物。然而,在水相环境中肽与 SWNT 之间的详细分子相互作用仍未得到探索。在这里,我们使用全原子分子动力学模拟来研究 RCP-Cys 在水/SWNT 界面处的影响。我们通过自由能计算表明,肽-SWNT 缔合在热力学上是有利的。此外,我们通过肽主链氢键分析了可能在 SWNT 上形成的类似 β-折叠环堆叠的结构和能量。我们的结果揭示了形成有序自组装 RCP-Cys/SWNT 复合物的热力学驱动力,这为未来应用的肽设计策略提供了见解。

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