Department of Chemistry and Biochemistry and the Center for Rare and Neglected Diseases, University of Notre Dame , Notre Dame, Indiana 46556, United States.
Biochemistry. 2013 Oct 1;52(39):6879-91. doi: 10.1021/bi4005478. Epub 2013 Sep 19.
The transport of cholesterol from NPC2 to NPC1 is essential for the maintenance of cholesterol homeostasis in late endosomes. On the basis of a rigid docking model of the crystal structures of the N-terminal cholesterol binding domain of NPC1(NTD) and the soluble NPC2 protein, models of the NPC1(NTD)-NPC2-cholesterol complexes at the beginning and the end of the transport as well as the unligated NPC1(NTD)-NPC2 complex were studied using 86 ns MD simulations. Significant differences in the cholesterol binding mode and the overall structure of the two proteins compared to the crystal structures of the cholesterol binding separate units were obtained. Relevant residues for the binding are identified using MM/GBSA calculations and the influence of the mutations analyzed by modeling them in silico, rationalizing the results of previous mutagenesis experiments. From the calculated energies and the NEB (nudged elastic band) evaluation of the cholesterol transfer mechanism, an atomistic model is proposed of the transfer of cholesterol from NPC2 to NPC1(NTD) through the formation of an intermediate NPC1(NTD)-NPC2 complex.
NPC2 将胆固醇转运至 NPC1 对于维持晚期内体中的胆固醇动态平衡至关重要。基于 NPC1(NTD)的晶体结构的刚性对接模型和可溶性 NPC2 蛋白,使用 86ns MD 模拟研究了 NPC1(NTD)-NPC2-胆固醇复合物在运输开始和结束时以及未连接 NPC1(NTD)-NPC2 复合物的模型。与胆固醇结合的单独单位的晶体结构相比,两种蛋白质的胆固醇结合模式和整体结构存在显著差异。使用 MM/GBSA 计算确定了相关的结合残基,并通过计算机模拟对突变进行分析,从而合理化以前的诱变实验结果。根据计算出的能量和 NEB(推斥弹性带)对胆固醇转移机制的评估,提出了胆固醇从 NPC2 向 NPC1(NTD)转移的原子模型,该模型通过形成中间 NPC1(NTD)-NPC2 复合物来实现。