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Synthesis and biological assessment of novel 2-thiazolylhydrazones and computational analysis of their recognition by monoamine oxidase B.

机译:新型2-噻唑基hydr唑酮的合成和生物学评估以及单胺氧化酶B对其识别的计算分析。

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摘要

Monoamine oxidase B (MAO-B) is a promising target for the treatment of neurodegenerative disorders. We report the synthesis and the biological evaluation of halogenated derivatives of 1-aryliden-2-(4-phenylthiazol-2-yl)hydrazines. The fluorinated series shows interesting activity and great selectivity toward the human recombinant MAO-B isoform expressed in baculovirus infected BTI insect cells. The multiple crystal structures alignment of the enzyme highlighted pronounced induced fit (IF) adaptations with respect to bound ligands. Therefore, IF docking (IFD) experiments and molecular dynamic (MD) simulations were carried out to reveal the putative binding mode and to explain the experimentally observed differences in the activity of 1-(aryliden-2-(4-(4-chlorophenyl)thiazol-2-yl)hydrazines. The?importance of water molecules within the binding site was also investigated. These are known to play an important role in the binding site cavity and to mediate protein-ligand interactions. Detailed analyses of the trajectories provide insights on the chemical features required for the activity of this scaffold. In particular it was highlighted the importance of fluorine atom interacting with the water close to the cofactor and the influence of steric bulkiness of substituents in the arylidene moiety. Free energy perturbation (FEP) analysis confirmed experimental data. The information we deduced will help to develop novel high-affinity MAO-B inhibitors.
机译:单胺氧化酶B(MAO-B)是治疗神经退行性疾病的有希望的靶标。我们报告1-芳基-2-(4-苯基噻唑-2-基)肼的卤代衍生物的合成和生物学评估。氟化系列对杆状病毒感染的BTI昆虫细胞中表达的人类重组MAO-B同工型显示出有趣的活性和极大的选择性。酶的多晶体结构比对突出了相对于结合的配体的明显的诱导适应(IF)适应性。因此,进行了IF对接(IFD)实验和分子动力学(MD)模拟,以揭示推定的结合模式并解释实验观察到的1-(芳基-2-(4-(4-氯苯基))活性的差异。噻唑-2-基)肼也研究了结合位点内水分子的重要性,已知这些分子在结合位点腔中起着重要作用,并介导蛋白质-配体之间的相互作用。关于该支架活性所需的化学特征的研究,尤其强调了氟原子与接近辅因子的水相互作用的重要性以及芳基亚烷基部分中取代基的空间体积的影响。经过验证的实验数据,我们得出的信息将有助于开发新型的高亲和力MAO-B抑制剂。

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