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Atomistic organization and characterization of tube-like assemblies comprising peptide-polymer conjugates: computer simulation studies

机译:包含肽 - 聚合物缀合物的管状组件的原子组织和表征:计算机模拟研究

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摘要

The structure and stability of the nanotube obtained by assembling peptide-polymer conjugates consisting of two poly(n-butyl acrylate) blocks coupled to the cyclic (D-alt-L)-octapeptide cyc[(L-Gln-D-Ala-L-Lys-D-Ala)(2)], have been investigated at the molecular level using atomistic molecular dynamics simulations. The effect of the wrapping polymer shells in the tube-like core, which consists of stacked beta-sheet cyclopeptides, has been examined by simulating assemblies of both unsubstituted cyclopeptides, and conjugates in chloroform and N,N-dimethylformamide solutions. Furthermore, the influence of the environment has been investigated by comparing conjugate assemblies in solution with those deposited on mica. In addition, nanotubes stabilized by beta-sheet-like hydrogen bonds between both parallel and antiparallel oriented cyclopeptides have been considered in all cases. The results, which have been analysed in terms of energy contributions, partial radial distribution functions, inter-subunit distances, shape of the cyclopeptide ring, internal van der Waals diameters, and both height and width of the nanostructures deposited on mica, have provided important microscopic insights. For example, analysis of both the energy terms and the structural dynamics obtained for the different assemblies indicate that the mica surface interacts more favourably with the parallel assembly than with the antiparallel ones, whereas the only configuration that is structurally stable in solution is the latter. Furthermore, adsorption onto the solid substrate produces a small deformation of the cylindrical molecular system
机译:通过组装由两个与环状(D-alt-L)-八肽cyc [(L-Gln-D-Ala-L)偶联的聚(丙烯酸正丁酯)嵌段组成的肽-聚合物共轭物获得的纳米管的结构和稳定性-Lys-D-Ala)(2)],已经在分子水平上使用原子分子动力学模拟进行了研究。通过模拟未取代的环肽和结合物在氯仿和N,N-二甲基甲酰胺溶液中的组装,已经检查了由堆叠的β-折叠环肽组成的管状核中包裹聚合物壳的作用。此外,通过将溶液中的共轭组装体与沉积在云母上的共轭组装体进行比较,研究了环境的影响。另外,在所有情况下都考虑了通过平行和反平行取向的环肽之间的β-折叠样氢键稳定的纳米管。从能量贡献,部分径向分布函数,亚基间距离,环肽环的形状,内部范德华直径以及沉积在云母上的纳米结构的高度和宽度方面对结果进行了分析。微观见解。例如,对不同组件获得的能量项和结构动力学的分析表明,云母表面与平行组件的相互作用比与反平行组件的相互作用更有利,而溶液中唯一在结构上稳定的构型是后者。此外,吸附到固体基质上会产生圆柱分子系统的小变形

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