Department of Chemistry, University of California, Irvine, CA 92697, USA.
J Membr Biol. 2011 Jan;239(1-2):57-62. doi: 10.1007/s00232-010-9325-7. Epub 2010 Dec 9.
Free-energy profiles describing the relative orientation of membrane proteins along predefined coordinates can be efficiently calculated by means of umbrella simulations. Such simulations generate reliable orientational distributions but are difficult to converge because of the very long equilibration times of the solvent and the lipid bilayer in explicit representation. Two implicit lipid membrane models are here applied in combination with the umbrella sampling strategy to the simulation of the transmembrane (TM) helical segment from virus protein U (Vpu). The models are used to study both orientation and energetics of this α-helical peptide as a function of hydrophobic mismatch. We observe that increasing the degree of positive hydrophobic mismatch increased the tilt angle of Vpu. These findings agree well with experimental data and as such validate the solvation models used in this study.
通过伞式模拟可以有效地计算描述膜蛋白沿预定义坐标的相对取向的自由能分布。这种模拟可以生成可靠的取向分布,但由于溶剂和脂质双层在显式表示中的非常长的平衡时间,因此很难收敛。本文应用两种隐式脂质膜模型与伞式采样策略相结合,对病毒蛋白 U(Vpu)的跨膜(TM)螺旋片段进行模拟。这些模型用于研究该α-螺旋肽的取向和能量与疏水性失配的关系。我们发现,增加正疏水性失配的程度会增加 Vpu 的倾斜角度。这些发现与实验数据非常吻合,因此验证了本研究中使用的溶剂化模型。