Department of Physics, Wenzhou University, Wenzhou 325035, China.
School of Data Science and Artificial Intelligence, Wenzhou University of Technology, Wenzhou 325035, China.
Molecules. 2023 Jul 31;28(15):5790. doi: 10.3390/molecules28155790.
The interaction between macromolecular chains and phospholipid membranes in aqueous solution was investigated using dissipative particle dynamics simulations. Two cases were considered, one in which the macromolecular chains were pulled along parallel to the membrane surfaces and another in which they were pulled vertical to the membrane surfaces. Several parameters, including the radius of gyration, shape factor, particle number, and order parameter, were used to investigate the interaction mechanisms during the dynamics processes by adjusting the pulling force strength of the chains. In both cases, the results showed that the macromolecular chains undergo conformational transitions from a coiled to a rod-like structure. Furthermore, the simulations revealed that the membranes can be damaged and repaired during the dynamic processes. The role of the pulling forces and the adsorption interactions between the chains and membranes differed in the parallel and perpendicular pulling cases. These findings contribute to our understanding of the interaction mechanisms between macromolecules and membranes, and they may have potential applications in biology and medicine.
使用耗散粒子动力学模拟研究了水溶液中大分子链与磷脂膜之间的相互作用。考虑了两种情况,一种是大分子链沿平行于膜表面的方向被拉动,另一种是垂直于膜表面的方向被拉动。通过调整链的拉力强度,使用几个参数,包括回转半径、形状因子、粒子数和序参数,来研究动力学过程中的相互作用机制。在这两种情况下,结果表明大分子链经历了从卷曲到棒状结构的构象转变。此外,模拟表明在动力学过程中膜可以被破坏和修复。在平行和垂直拉动的情况下,拉力和链与膜之间的吸附相互作用的作用不同。这些发现有助于我们理解大分子和膜之间的相互作用机制,它们可能在生物学和医学中有潜在的应用。