Air Force Research Laboratory, Materials & Manufacturing Directorate , 2941 Hobson Way, WPAFB, Ohio 45433, United States.
J Phys Chem B. 2013 Sep 19;117(37):10691-7. doi: 10.1021/jp403505y. Epub 2013 Sep 9.
The interaction of graphene with biomolecules has a variety of useful applications. In particular, graphitic surfaces decorated with peptides are being considered for high performance biochemical sensors. The interaction of peptides with graphene can also provide insight into the binding behavior of larger biomolecules. In this investigation, we have computed the binding enthalpies of a series of GXG tripeptides with graphene using classical molecular dynamics. Explicit water molecules were included to capture the effect of solvent. Of the twenty amino acid residues examined (X in GXG), arginine, glutamine, and asparagine exhibit the strongest interactions with graphene. Analysis of the trajectories shows that the presence of graphene affects the peptide conformation relative to its conformation in solution. We also find that the peptides favor the graphene interface predominantly due to the influence of the solvent, with hydrophilic residues binding more strongly than hydrophobic residues. These results demonstrate the need to include explicit solvent atoms when modeling peptide-graphene systems to mimic experimental conditions. Furthermore, the scheme outlined herein may be widely applicable for the determination and validation of surface interaction parameters for a host of molecular fragments using a variety of techniques, ranging from coarse-grained models to quantum mechanical methods.
石墨烯与生物分子的相互作用具有多种有用的应用。特别是,用肽修饰的石墨表面正被考虑用于高性能生化传感器。肽与石墨烯的相互作用也可以深入了解较大生物分子的结合行为。在这项研究中,我们使用经典分子动力学计算了一系列 GXG 三肽与石墨烯的结合焓。包含了显式水分子以捕获溶剂的影响。在所研究的二十种氨基酸残基(GXG 中的 X)中,精氨酸、谷氨酰胺和天冬酰胺与石墨烯表现出最强的相互作用。轨迹分析表明,石墨烯的存在相对于其在溶液中的构象会影响肽的构象。我们还发现,由于溶剂的影响,肽更倾向于与石墨烯界面结合,亲水性残基的结合强度大于疏水性残基。这些结果表明,在模拟实验条件时,需要包含显式溶剂原子来模拟肽-石墨烯系统。此外,本文概述的方案可以广泛应用于使用各种技术(从粗粒模型到量子力学方法)确定和验证一系列分子片段的表面相互作用参数。