Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.
Structure. 2013 May 7;21(5):810-9. doi: 10.1016/j.str.2013.03.005. Epub 2013 Apr 18.
Interactions of membrane proteins with lipid molecules are central to their stability and function. We have used multiscale molecular dynamics simulations to determine the extent to which interactions with lipids are conserved across the aquaporin (Aqp) family of membrane proteins. Simulation-based assessment of the lipid interactions made by Aqps when embedded within a simple phospholipid bilayer agrees well with the protein-lipid contacts determined by electron diffraction from 2D crystals. Extending this simulation-based analysis to all Aqps of known structure reveals a degree of conservation of such interactions across the Aqp structural proteome. Despite similarities in the binding orientations and interactions of the lipids, there do not appear to be distinct, high-specificity lipid binding sites on the surface of Aqps. Rather Aqps exhibit a more broadly conserved protein/lipid interface, suggestive of interchange between annular and bulk lipids, instead of a fixed annular "shell" of lipids.
膜蛋白与脂质分子的相互作用对其稳定性和功能至关重要。我们使用多尺度分子动力学模拟来确定在多大程度上,跨水通道蛋白(Aqp)家族的膜蛋白,其与脂质的相互作用是保守的。通过对嵌入简单磷脂双层中的 Aqps 进行基于模拟的脂质相互作用评估,与通过二维晶体的电子衍射确定的蛋白质-脂质接触情况非常吻合。将这种基于模拟的分析扩展到所有已知结构的 Aqps,揭示了这种相互作用在 Aqp 结构蛋白质组中的一定程度的保守性。尽管脂质的结合取向和相互作用存在相似之处,但在 Aqps 的表面似乎没有独特的、高特异性的脂质结合位点。相反,Aqps 表现出更广泛的保守的蛋白质/脂质界面,暗示环形和体相脂质之间的互换,而不是固定的环形“壳”脂质。