Department of Medicine, University of Rome Tor Vergata, Rome, Italy.
J Mol Model. 2012 Jun;18(6):2377-86. doi: 10.1007/s00894-011-1255-5. Epub 2011 Oct 12.
The mitochondrial adenosine diphosphate/adenosine triphosphate (ADP/ATP) carrier-AAC-was crystallized in complex with its specific inhibitor carboxyatractyloside (CATR). The protein consists of a six-transmembrane helix bundle that defines the nucleotide translocation pathway, which is closed towards the matrix side due to sharp kinks in the odd-numbered helices. In this paper, we describe the interaction between the matrix side of the AAC transporter and the ATP(4-) molecule using carrier structures obtained through classical molecular dynamics simulation (MD) and a protein-ligand docking procedure. Fifteen structures were extracted from a previously published MD trajectory through clustering analysis, and 50 docking runs were carried out for each carrier conformation, for a total of 750 runs ("MD docking"). The results were compared to those from 750 docking runs performed on the X-ray structure ("X docking"). The docking procedure indicated the presence of a single interaction site in the X-ray structure that was conserved in the structures extracted from the MD trajectory. MD docking showed the presence of a second binding site that was not found in the X docking. The interaction strategy between the AAC transporter and the ATP(4-) molecule was analyzed by investigating the composition and 3D arrangement of the interaction pockets, together with the orientations of the substrate inside them. A relationship between sequence repeats and the ATP(4-) binding sites in the AAC carrier structure is proposed.
线粒体腺苷二磷酸/三磷酸(ADP/ATP)载体-AAC-与它的特异性抑制剂羧基甜菜碱(CATR)形成复合物被结晶。该蛋白由一个六跨膜螺旋束组成,定义了核苷酸转运途径,由于奇数螺旋的急剧扭曲,该途径在基质侧关闭。在本文中,我们使用通过经典分子动力学模拟(MD)和蛋白质-配体对接程序获得的载体结构,描述 AAC 转运体基质侧与 ATP(4-)分子之间的相互作用。通过聚类分析从以前发表的 MD 轨迹中提取了 15 个结构,并且对每个载体构象进行了 50 次对接运行,总共进行了 750 次运行(“MD 对接”)。将结果与在 X 射线结构上进行的 750 次对接运行(“X 对接”)的结果进行了比较。对接程序表明,X 射线结构中存在一个单一的相互作用位点,在从 MD 轨迹中提取的结构中也存在保守性。MD 对接显示存在第二个结合位点,在 X 对接中未发现。通过研究相互作用口袋的组成和 3D 排列以及底物在其中的取向,分析了 AAC 转运体与 ATP(4-)分子的相互作用策略。提出了 AAC 载体结构中序列重复与 ATP(4-)结合位点之间的关系。