VTT Technical Research Centre of Finland, Espoo, Finland.
J Lipid Res. 2010 Aug;51(8):2341-51. doi: 10.1194/jlr.M006494. Epub 2010 Apr 29.
A low level of high density lipoprotein cholesterol (HDL-C) is a powerful risk factor for cardiovascular disease. However, despite the reported key role of apolipo-proteins, specifically, apoA-I, in HDL metabolism, lipid molecular composition of HDL particles in subjects with high and low HDL-C levels is currently unknown. Here lipidomics was used to study HDL derived from well-characterized high and low HDL-C subjects. Low HDL-C subjects had elevated triacylglycerols and diminished lysophosphatidylcholines and sphingomyelins. Using information about the lipid composition of HDL particles in these two groups, we reconstituted HDL particles in silico by performing large-scale molecular dynamics simulations. In addition to confirming the measured change in particle size, we found that the changes in lipid composition also induced specific spatial distributions of lipids within the HDL particles, including a higher amount of triacylglycerols at the surface of HDL particles in low HDL-C subjects. Our findings have important implications for understanding HDL metabolism and function. For the first time we demonstrate the power of combining molecular profiling of lipoproteins with dynamic modeling of lipoprotein structure.
高密度脂蛋白胆固醇(HDL-C)水平低是心血管疾病的一个强有力的危险因素。然而,尽管载脂蛋白,特别是载脂蛋白 A-I,在 HDL 代谢中被报道具有关键作用,但目前尚不清楚 HDL 颗粒中脂质的分子组成在 HDL-C 水平高和低的受试者中。在这里,脂质组学被用于研究来自特征明确的 HDL-C 水平高和低的受试者的 HDL。低 HDL-C 受试者的三酰甘油水平升高,而溶血磷脂酰胆碱和神经鞘磷脂减少。利用这两组中 HDL 颗粒的脂质组成信息,我们通过进行大规模分子动力学模拟在计算机上重新构建了 HDL 颗粒。除了证实测量到的颗粒大小变化外,我们还发现脂质组成的变化还诱导了 HDL 颗粒内脂质的特定空间分布,包括在低 HDL-C 受试者中 HDL 颗粒表面的三酰甘油含量增加。我们的发现对理解 HDL 代谢和功能具有重要意义。我们首次证明了将脂蛋白的分子分析与脂蛋白结构的动态建模相结合的强大功能。