Department of Chemical Engineering and Polymer Research Center, Bogazici University, Bebek, 34342, Istanbul, Turkey.
Program of Computational Science and Engineering and Polymer Research Center, Bogazici University, Bebek, 34342, Istanbul, Turkey.
Mol Inform. 2011 Dec;30(11-12):986-95. doi: 10.1002/minf.201100109. Epub 2011 Nov 30.
We aim to uncover the binding modes of benzothiazoles, which have been reported as specific inhibitors of triosephosphate isomerase from the parasite Trypanosoma cruzi (TcTIM), by performing blind dockings on both TcTIM and human TIM (hTIM). Detailed analysis of binding sites and specific interactions are carried out based on ensemble dockings to multiple receptor conformers obtained from molecular dynamics simulations. In TcTIM dimer dockings, the inhibitors preferentially bind to the tunnel-shaped cavity formed at the interface of the subunits, whereas non-inhibitors mostly choose other sites. In contrast, TcTIM monomer binding interface and hTIM dimer interface do not present a specific binding site for the inhibitors. These findings point to the importance of the tunnel and of the dimeric form for inhibition of TcTIM. Specific interactions of the inhibitors and their sulfonate-free derivatives with the receptor residues indicate the significance of sulfonate group for binding affinity and positioning on the TcTIM dimer interface. One of the inhibitors also binds to the active site, which may explain its relatively higher inhibition effect on hTIM.
我们旨在通过对寄生虫克氏锥虫(TcTIM)和人 TIM(hTIM)的盲对接,揭示苯并噻唑作为三磷酸甘油醛异构酶特异性抑制剂的结合模式。基于分子动力学模拟获得的多个受体构象的集合对接,对结合位点和特定相互作用进行详细分析。在 TcTIM 二聚体对接中,抑制剂优先结合在亚基界面形成的隧道形腔中,而非抑制剂则主要选择其他部位。相比之下,TcTIM 单体结合界面和 hTIM 二聚体界面没有为抑制剂提供特定的结合部位。这些发现表明隧道和二聚体形式对 TcTIM 的抑制作用非常重要。抑制剂及其磺酸盐自由衍生物与受体残基的特定相互作用表明磺酸盐基团对结合亲和力和在 TcTIM 二聚体界面上的定位具有重要意义。其中一种抑制剂也与活性位点结合,这可能解释了它对 hTIM 具有相对较高的抑制作用。