Nguyen Anh T P, Weigle Austin T, Shukla Diwakar
Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, IL 61801.
Department of Chemistry, University of Illinois at Urbana-Champaign, IL 61801.
bioRxiv. 2023 Jul 22:2023.07.20.549977. doi: 10.1101/2023.07.20.549977.
With the diversity of lipid-protein interactions, any observed membrane protein dynamics or functions directly depend on the lipid bilayer selection. However, the implications of lipid bilayer choice are seldom considered unless characteristic lipid-protein interactions have been previously reported. Using molecular dynamics simulation, we characterize the effects of membrane embedding on plant aquaporin SoPIP2;1, which has no reported high-affinity lipid interactions. The regulatory impacts of a realistic lipid bilayer, and nine different homogeneous bilayers, on varying SoPIP2;1 dynamics were examined. We demonstrate that SoPIP2;1s structure, thermodynamics, kinetics, and water transport are altered as a function of each membrane construct's ensemble properties. Notably, the realistic bilayer provides stabilization of non-functional SoPIP2;1 metastable states. Hydrophobic mismatch and lipid order parameter calculations further explain how lipid ensemble properties manipulate SoPIP2;1 behavior. Our results illustrate the importance of careful bilayer selection when studying membrane proteins. To this end, we advise cautionary measures when performing membrane protein molecular dynamics simulations.
由于脂-蛋白相互作用的多样性,任何观察到的膜蛋白动力学或功能都直接取决于脂质双层的选择。然而,除非之前已经报道过特征性的脂-蛋白相互作用,否则很少会考虑脂质双层选择的影响。我们使用分子动力学模拟来表征膜嵌入对植物水通道蛋白SoPIP2;1的影响,该蛋白尚未报道有高亲和力的脂质相互作用。研究了真实脂质双层和九种不同的均匀双层对SoPIP2;1不同动力学的调节作用。我们证明,SoPIP2;1的结构、热力学、动力学和水运输会随着每种膜结构的整体性质而改变。值得注意的是,真实的双层膜能稳定无功能的SoPIP2;1亚稳态。疏水不匹配和脂质序参数计算进一步解释了脂质整体性质如何操纵SoPIP2;1的行为。我们的结果说明了在研究膜蛋白时仔细选择双层膜的重要性。为此,我们建议在进行膜蛋白分子动力学模拟时采取谨慎措施。