Freiburg Centre for Interactive Materials and Bioinspired Technologies (FIT) , 79110 Freiburg, Germany.
Institute of Physics, University of Freiburg , Hermann-Herder-Str. 3, 79104 Freiburg, Germany.
Langmuir. 2017 Jul 5;33(26):6492-6502. doi: 10.1021/acs.langmuir.7b01455. Epub 2017 Jun 21.
Molecular dynamics simulations in conjunction with the Martini coarse-grained model have been used to investigate the (nonequilibrium) behavior of helical 22-residue poly(γ-benzyl-l-glutamate) (PBLG) peptides at the water/vapor interface. Preformed PBLG mono- or bilayers homogeneously covering the water surface laterally collapse in tens of nanoseconds, exposing significant proportions of empty water surface. This behavior was also observed in recent AFM experiments at similar areas per monomer, where a complete coverage had been assumed in earlier work. In the simulations, depending on the area per monomer, either elongated clusters or fibrils form, whose heights (together with the portion of empty water surface) increase over time. Peptides tend to align with respect to the fiber axis or with the major principal axis of the cluster, respectively. The aspect ratio of the cluster observed is 1.7 and, hence, comparable to though somewhat smaller than the aspect ratio of the peptides in α-helical conformation, which is 2.2. The heights of the fibrils is 3 nm after 20 ns and increases to 4.5 nm if the relaxation time is increased by 2 orders of magnitude, in agreement with the experiment. Aggregates with heights of about 3 or 4.5 nm are found to correspond to local bi- or trilayer structures, respectively.
分子动力学模拟与马蒂尼粗粒化模型相结合,用于研究螺旋 22 残基聚(γ-苄基-l-谷氨酸)(PBLG)肽在水/汽界面处的(非平衡)行为。预先形成的 PBLG 单层或双层均匀覆盖在水面上,在几十纳秒内横向坍塌,暴露出大量空的水面。这种行为也在最近类似单体面积的 AFM 实验中观察到,在早期工作中,假设了完全覆盖。在模拟中,根据单体面积,要么形成伸长的簇,要么形成纤维,其高度(以及空水面的部分)随时间增加。肽倾向于相对于纤维轴或簇的主要主轴对齐。观察到的簇的纵横比为 1.7,因此与α-螺旋构象中肽的纵横比(2.2)相比较小。如果将弛豫时间增加两个数量级,则 20 ns 后纤维的高度为 3 nm,如果增加两个数量级,则增加到 4.5 nm,与实验结果一致。发现高度约为 3 或 4.5nm 的聚集体分别对应于局部双层或三层结构。