Shen L, Bassolino D, Stouch T
Department of Macromolecular Modeling, Bristol-Myers Squibb Research Institute, Princeton, New Jersey 08543-4000, USA.
Biophys J. 1997 Jul;73(1):3-20. doi: 10.1016/S0006-3495(97)78042-1.
To probe the fundamentals of membrane/protein interactions, all-atom multi-nanosecond molecular dynamics simulations were conducted on a single transmembrane poly(32)alanine helix in a fully solvated dimyristoyphosphatidylcholine (DMPC) bilayer. The central 12 residues, which interact only with the lipid hydrocarbon chains, maintained a very stable helical structure. Helical regions extended beyond these central 12 residues, but interactions with the lipid fatty-acyl ester linkages, the lipid headgroups, and water molecules made the helix less stable in this region. The C and N termini, exposed largely to water, existed as random coils. As a whole, the helix tilted substantially, from perpendicular to the bilayer plane (0 degree) to a 30 degrees tilt. The helix experienced a bend at its middle, and the two halves of the helix at times assumed substantially different tilts. Frequent hydrogen bonding, of up to 0.7 ns in duration, occurred between peptide and lipid molecules. This resulted in correlated translational diffusion between the helix and a few lipid molecules. Because of the large variation in lipid conformation, the lipid environment of the peptide was not well defined in terms of "annular" lipids and on average consisted of 18 lipid molecules. When compared with a "neat" bilayer without peptide, no significant difference was seen in the bilayer thickness, lipid conformations or diffusion, or headgroup orientation. However, the lipid hydrocarbon chain order parameters showed a significant decrease in order, especially in those methylene groups closest to the headgroup.
为了探究膜/蛋白质相互作用的基本原理,我们在完全溶剂化的二肉豆蔻酰磷脂酰胆碱(DMPC)双层膜中对单个跨膜聚(32)丙氨酸螺旋进行了全原子多纳秒分子动力学模拟。仅与脂质烃链相互作用的中间12个残基保持了非常稳定的螺旋结构。螺旋区域延伸到这中间的12个残基之外,但与脂质脂肪酰酯键、脂质头部基团和水分子的相互作用使该区域的螺旋稳定性降低。基本上暴露于水中的C端和N端以无规卷曲形式存在。总体而言,螺旋大幅倾斜,从垂直于双层平面(0度)倾斜到30度。螺旋在中间处发生弯曲,螺旋的两半有时呈现出显著不同的倾斜度。肽与脂质分子之间频繁形成持续时间长达0.7纳秒的氢键。这导致螺旋与少数脂质分子之间发生相关的平移扩散。由于脂质构象变化很大,肽的脂质环境在“环形”脂质方面定义不明确,但平均由18个脂质分子组成。与没有肽的“纯净”双层膜相比,在双层膜厚度、脂质构象或扩散以及头部基团取向方面没有观察到显著差异。然而,脂质烃链序参数显示有序度显著降低,尤其是在最靠近头部基团的那些亚甲基中。