Instituto de Investigación en Ciencias Básicas y Aplicadas, Centro de Investigaciones Químicas, Universidad Autónoma del Estado de Morelos, 62209 Cuernavaca, Morelos, Mexico.
Departmento de Bioquímica, Escuela Superior de Medicina, Instituto Politécnico Nacional, 11340 Cd México, Mexico.
Molecules. 2018 Nov 15;23(11):2984. doi: 10.3390/molecules23112984.
We have previously reported the synthesis, in vitro and in silico activities of new GABA analogues as inhibitors of the GABA-AT enzyme from , where the nitrogen atom at the γ-position is embedded in heterocyclic scaffolds. With the goal of finding more potent inhibitors, we now report the synthesis of a new set of GABA analogues with a broader variation of heterocyclic scaffolds at the γ-position such as thiazolidines, methyl-substituted piperidines, morpholine and thiomorpholine and determined their inhibitory potential over the GABA-AT enzyme from . These structural modifications led to compound which showed a 73% inhibition against this enzyme. In vivo studies with PTZ-induced seizures on male CD1 mice show that compound has a neuroprotective effect at a 0.50 mmole/kg dose. A QSAR study was carried out to find the molecular descriptors associated with the structural changes in the GABA scaffold to explain their inhibitory activity against GABA-AT. Employing 3D molecular descriptors allowed us to propose the GABA analogues enantiomeric active form. To evaluate the interaction with and human GABA-AT by molecular docking, the constructions of homology models was carried out. From these calculations, showed a strong interaction with both GABA-AT enzymes in agreement with experimental results and the QSAR model, which indicates that bulky ligands tend to be the better inhibitors especially those with a sulfur atom on their structure.
我们之前曾报道过新型 GABA 类似物的合成、体外和计算机模拟活性,这些类似物作为来自 的 GABA-AT 酶的抑制剂,其中 γ 位的氮原子嵌入杂环支架中。为了寻找更有效的抑制剂,我们现在报告了一组新的 GABA 类似物的合成,这些类似物在 γ 位具有更广泛的杂环支架变化,如噻唑烷、甲基取代的哌啶、吗啉和硫代吗啉,并测定了它们对来自 的 GABA-AT 酶的抑制潜力。这些结构修饰导致化合物 对该酶的抑制率达到 73%。PTZ 诱导的雄性 CD1 小鼠癫痫发作的体内研究表明,化合物 在 0.50mmole/kg 剂量下具有神经保护作用。进行了 QSAR 研究,以找到与 GABA 支架结构变化相关的分子描述符,解释其对 GABA-AT 的抑制活性。使用 3D 分子描述符使我们能够提出 GABA 类似物的对映活性形式。为了通过分子对接评估与 和人 GABA-AT 的相互作用,进行了同源模型的构建。从这些计算中,化合物 与两种 GABA-AT 酶表现出强烈的相互作用,这与实验结果和 QSAR 模型一致,表明大体积配体往往是更好的抑制剂,特别是那些结构中含有硫原子的配体。