Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, Helsinki, Finland.
Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, Helsinki, Finland.
J Lipid Res. 2018 Apr;59(4):670-683. doi: 10.1194/jlr.M082685. Epub 2018 Feb 8.
LCAT is an enzyme responsible for the formation of cholesteryl esters from unesterified cholesterol (UC) and phospholipid (PL) molecules in HDL particles. However, it is poorly understood how LCAT interacts with lipoproteins and how apoA-I activates it. Here we have studied the interactions between LCAT and lipids through molecular simulations. In addition, we studied the binding of LCAT to apoA-I-derived peptides, and their effect on LCAT lipid association-utilizing experiments. Results show that LCAT anchors itself to lipoprotein surfaces by utilizing nonpolar amino acids located in the membrane-binding domain and the active site tunnel opening. Meanwhile, the membrane-anchoring hydrophobic amino acids attract cholesterol molecules next to them. The results also highlight the role of the lid-loop in the lipid binding and conformation of LCAT with respect to the lipid surface. The apoA-I-derived peptides from the LCAT-activating region bind to LCAT and promote its lipid surface interactions, although some of these peptides do not bind lipids individually. The transfer free-energy of PL from the lipid bilayer into the active site is consistent with the activation energy of LCAT. Furthermore, the entry of UC molecules into the active site becomes highly favorable by the acylation of SER181.
LCAT 是一种酶,负责将 HDL 颗粒中的未酯化胆固醇(UC)和磷脂(PL)分子转化为胆固醇酯。然而,LCAT 如何与脂蛋白相互作用以及载脂蛋白 A-I 如何激活它,目前仍知之甚少。在这里,我们通过分子模拟研究了 LCAT 与脂质之间的相互作用。此外,我们还研究了 LCAT 与载脂蛋白 A-I 衍生肽的结合及其对 LCAT 脂质结合的影响利用实验。结果表明,LCAT 通过利用位于膜结合域和活性位点隧道开口的非极性氨基酸将自身锚定在脂蛋白表面。同时,膜锚定的疏水性氨基酸吸引它们旁边的胆固醇分子。结果还突出了盖子环在 LCAT 与脂质表面相互作用时对脂质结合和构象的作用。来自 LCAT 激活区域的载脂蛋白 A-I 衍生肽与 LCAT 结合并促进其与脂质表面的相互作用,尽管其中一些肽不能单独结合脂质。PL 从脂质双层向活性位点的转移自由能与 LCAT 的活化能一致。此外,通过 SER181 的酰化,UC 分子进入活性位点变得非常有利。