Byrd Katherine M, Arieno Marcus D, Kennelly Megan E, Estiu Guillermina, Wiest Olaf, Helquist Paul
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN 46556, United States.
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN 46556, United States; Lab of Computational Chemistry and Drug Design, School of Chemical Biology and Biotechnology, Peking University, Shenzhen Graduate School, Shenzhen 518055, China.
Bioorg Med Chem. 2015 Jul 1;23(13):3843-51. doi: 10.1016/j.bmc.2015.03.053. Epub 2015 Mar 27.
A crosslinker was designed and synthesized as a molecular tool for potential use in probing the intracellular trafficking pathways of steroids. The design was guided by computational modeling based upon a model for the transfer of cholesterol between two proteins, NPC1 and NPC2. These proteins play critical roles in the transport of low-density lipoprotein-derived cholesterol from the lumen of lysosomes to other subcellular compartments. Two modified cholesterol residues were covalently joined by a tether based on molecular modeling of the transient interaction of NPC1 and NPC2 during the transfer of cholesterol from the binding site of one of these proteins to the other. With two cholesterol molecules appropriately connected, we hypothesize that the cholesterol binding sites of both proteins will be simultaneously occupied in a manner that will stabilize the protein-protein interaction to permit detailed structural analysis of the resulting complex. A photoaffinity label has also been introduced into one of the cholesterol cores to permit covalent attachment of one of the units into its respective protein-binding pocket. The basic design of these crosslinkers should render them useful for examining interactions of the NPC1/NPC2 pair as well as other sterol transport proteins.
设计并合成了一种交联剂,作为一种分子工具,可能用于探究类固醇的细胞内运输途径。该设计以基于胆固醇在两种蛋白质NPC1和NPC2之间转移模型的计算建模为指导。这些蛋白质在将低密度脂蛋白衍生的胆固醇从溶酶体腔转运到其他亚细胞区室中起着关键作用。基于胆固醇从其中一种蛋白质的结合位点转移到另一种蛋白质的结合位点过程中NPC1和NPC2的瞬时相互作用的分子模型,通过一个连接链将两个修饰的胆固醇残基共价连接起来。通过适当地连接两个胆固醇分子,我们推测这两种蛋白质的胆固醇结合位点将同时被占据,从而稳定蛋白质-蛋白质相互作用,以便对形成的复合物进行详细的结构分析。还在其中一个胆固醇核心中引入了光亲和标记,以便将其中一个单元共价连接到其各自的蛋白质结合口袋中。这些交联剂的基本设计应使其可用于研究NPC1/NPC2对以及其他固醇转运蛋白的相互作用。