Vasilevskaya Valentina V, Markov Vladimir A, Khalatur Pavel G, Khokhlov Alexei R
Institute of Organoelement Compounds, Russian Academy of Sciences, Moscow 119991, Russia.
J Chem Phys. 2006 Apr 14;124(14):144914. doi: 10.1063/1.2191049.
A coarse-grained model is used to study the conformational properties of semiflexible polymers with amphiphilic monomer units containing both hydrophilic and hydrophobic interaction sites. The hydrophobically driven conformational transitions are studied using molecular dynamics simulations for the chains of varying stiffness, as characterized by intrinsic Kuhn segment lengths that vary over a decade. It is shown that the energy of hydrophobic attraction required for the realization of the coil-to-globule transition increases with increasing chain stiffness. For rather stiff backbone, the coil-to-globule transition corresponds to a first order phase transition. We find that depending on the chain stiffness, a variety of thermodynamically stable anisometric chain morphologies are possible in a solvent selectively poor for hydrophobic sites of amphiphilic monomer units. For flexible chains, the amphiphilic polymer forms a cylindrical globule having blob structure with nearly spherical blobs. With increasing stiffness, the number of blobs composing the globule decreases and the shape of blobs transforms into elongated cylinder. Further increase in stiffness leads to compaction of macromolecules into a collagenlike structure when the chain folds itself several times and different strands wind round each other. In this state, the collagenlike structures coexist with toroidal globules, both conformations having approximately equal energies.
采用粗粒度模型研究了具有同时包含亲水和疏水相互作用位点的两亲单体单元的半柔性聚合物的构象性质。利用分子动力学模拟研究了不同刚度链(以在十年间变化的本征库恩链段长度为特征)的疏水驱动构象转变。结果表明,实现从线团到球状体转变所需的疏水吸引能随链刚度的增加而增加。对于相当刚性的主链,从线团到球状体的转变对应于一级相变。我们发现,取决于链的刚度,在对两亲单体单元的疏水位点选择性不良的溶剂中,可能存在多种热力学稳定的各向异性链形态。对于柔性链,两亲聚合物形成具有近球形链段的链段结构的圆柱形球状体。随着刚度增加,组成球状体的链段数量减少,链段形状转变为细长圆柱体。当链自身折叠几次且不同链相互缠绕时,刚度的进一步增加导致大分子压缩成类胶原结构。在这种状态下,类胶原结构与环形球状体共存,两种构象具有大致相等的能量。