Vega-Teijido Mauricio, Caracelli Ignez, Zukerman-Schpector Julio
Laboratório de Cristalografia, Esterodinâmica e Modelagem Molecular, Departamento de Química, Universidade Federal de São Carlos, CP 676, 13565-905 São Carlos, SP, Brazil.
J Mol Graph Model. 2006 Mar;24(5):349-55. doi: 10.1016/j.jmgm.2005.09.008. Epub 2005 Nov 7.
To explore three possible binding sites of trypanothione and glutathione reductase, namely, the active, the dimer interface and the coenzyme NADPH binding site, a series of eight compounds, nitrofurans and nitrothiophenes derivatives, were docked, using their crystallographic and modeled conformations. Docking results showed that, for both families and both enzymes, compounds are more likely to bind in the interface site, even though there is some probability of binding in the active site. These studies are in agreement with experimental data, which suggest that these class of compounds can act either as uncompetitive or mixed type inhibitors, and also with the finding that there is an alpha-helix which connects the active with the interface site, thus allowing charge transference between them.
为了探究锥虫硫醇和谷胱甘肽还原酶的三个可能结合位点,即活性位点、二聚体界面和辅酶NADPH结合位点,使用一系列八种化合物(硝基呋喃和硝基噻吩衍生物)的晶体结构和建模构象进行对接。对接结果表明,对于这两个系列的化合物以及两种酶而言,尽管化合物在活性位点有一定的结合概率,但它们更倾向于结合在界面位点。这些研究结果与实验数据相符,实验数据表明这类化合物可以作为非竞争性或混合型抑制剂发挥作用,同时也与以下发现一致:存在一个连接活性位点和界面位点的α-螺旋,从而使得它们之间能够进行电荷转移。