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Molecular Docking of Compounds Modulating Amyloid Peptide Aggregation Schemes

机译:化合物调节淀粉样肽聚集方案的分子对接

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Alzheimer's disease is characterized by the formation of plaques in the brain, which are commonly composed of amyloid peptides as a result of aspartyl protease p-secretase expression. This work is dedicated to in silico studies of the interaction of artemisinin, dihydroartemisinin, dihy-droartemisinin dimer with amyloid 12Aβ_(9-40) peptide and β-secretase. The comparison was made with curcumin, which is in phase II of clinical trials. It has been shown that all ligands, similarly to curcumin, bind to the specific amino acids of the peptide that are responsible for the formation and the growth of the fibril with high affinity. Moreover, dihydroartemisinin and dihydroartemisinin dimer bind to amino acids that are responsible for the stabilization of formed fibril. All studied ligands interact with the critical amino acids of the catalytic center of (3-secretase, while dihydroartemisinin dimer can also bind to Arg235, which is characteristic of peptide inhibitors of β-secretase. Dihydroartemisinin dimer has a higher binding affinity compared to other ligands. Thus, the selected compounds can be considered as possible candidates for the treatment of Alzheimer's disease.
机译:阿尔茨海默病的疾病的特征在于肿瘤中的斑块形成,其通常由淀粉蛋白肽作为阿斯巴醇蛋白酶P-分泌酶表达的结果组成。这项工作致力于在氨基辛素,二氢颗粒素,二氢甲醛二聚体与淀粉样蛋白12aβ_(9-40)肽和β-分泌酶的硅蛋白。用姜黄素制备比较,其是临床试验的II期。已经表明,所有配体,类似于姜黄素,与肽的特定氨基酸结合,该肽的形成和具有高亲和力的原纤维的生长。此外,二氢氨基氨基和二氢氨基蛋白二聚体与氨基酸结合,该氨基酸负责形成成型原纤维的稳定性。所有研究的配体与(3分泌酶的催化中心的临界氨基酸相互作用,而二氢氨基氨基二聚体也可以结合ARG235,这是β-分泌酶的肽抑制剂的特征。与其他配体相比,二氢甲醛二聚体具有更高的结合亲和力。因此,所选择的化合物可以被认为是治疗阿尔茨海默病的可能候选者。

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