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天然生物碱与自制数据库的计算化学研究,以预测对神经退行性疾病关键酶的抑制潜力。

Computational Chemistry Study of Natural Alkaloids and Homemade Databank to Predict Inhibitory Potential Against Key Enzymes in Neurodegenerative Diseases.

作者信息

Lorenzo Vitor Prates, Alves Mateus Feitosa, Scotti Luciana, Dos Santos Socrates Golzio, de Fatima Formiga Melo Diniz Margareth, Scotti Marcus Tullius

机构信息

Chemistry Departament, Federal Institute of Sertao Pernambucano, Petrolina. Brazil.

Postgraduate Program in Natural Products and Synthetic Bioactive, Federal University of Paraiba, Joao Pessoa. Brazil.

出版信息

Curr Top Med Chem. 2017;17(26):2926-2934. doi: 10.2174/1568026617666170821150538.

Abstract

Cissampelos sympodialis Eichl is used in folk medicine for the treatment of various inflammatory diseases; several alkaloids have been isolated from this species and some of them have anti-allergic, immunomodulatory and spasmolytic activities. Treatment of rats with the total tertiary alkaloid fraction showed an antidepressant effect. One of the depression causes can be the deficiency of monoamines, which is a factor displayed in patients with Alzheimer's disease. Theoretical studies using in silico methods have aided in the process of drug discovery. From this perspective, we applied ligand-based-virtual associated with structure-based-virtual screening of alkaloids from C. sympodialis Eichl and 101 derivatives proposed by us are promising leads against some important targets (BACE, GSK-3β and MAO-A). From the ChEMBL database, we selected a diverse set of 724, 1898 and 1934 structures, which had been tested against BACE, GSK-3β and MAO-A, to create Random Forest (RF) models with good overall prediction rate, over 78%, for cross-validation and test set. Compounds 24 and 47 presented activity against GSK-3β and MAO-A simultaneously. The natural alkaloids roraimine and simpodialine-β-N-oxide presented activity against BACE and liriodenine against MAO-A. The top 20 compounds with best docking performance per enzyme were selected and validated through the RF model. All 9 compounds classified as active in RF model for BACE are bisbenzylisoquinoline alkaloids and were present in the top docking scoring, demonstrating a consensus on results. Affinities of bisbenzylisoquinoline alkaloids, including two secondary metabolites (roraimine and simpodialine-β-N-oxide), with BACE suggest that this skeleton can be used as a model to design new antagonists of this enzyme.

摘要

豆科锡生藤(Cissampelos sympodialis Eichl)在民间医学中用于治疗多种炎症性疾病;已从该物种中分离出多种生物碱,其中一些具有抗过敏、免疫调节和解痉活性。用总叔生物碱部分处理大鼠显示出抗抑郁作用。抑郁症的一个病因可能是单胺缺乏,这是阿尔茨海默病患者中表现出的一个因素。使用计算机模拟方法的理论研究有助于药物发现过程。从这个角度来看,我们应用基于配体的虚拟筛选与基于结构的虚拟筛选相结合的方法,对锡生藤中的生物碱进行筛选,我们提出的101种衍生物有望成为针对一些重要靶点(β-分泌酶(BACE)、糖原合成酶激酶-3β(GSK-3β)和单胺氧化酶-A(MAO-A))的先导化合物。从ChEMBL数据库中,我们选择了724、1898和1934个不同的结构,这些结构已经针对BACE、GSK-3β和MAO-A进行了测试,以创建具有良好总体预测率(交叉验证和测试集超过78%)的随机森林(RF)模型。化合物24和47同时对GSK-3β和MAO-A具有活性。天然生物碱罗赖马宁和锡生藤碱-β-N-氧化物对BACE具有活性,鹅掌楸碱对MAO-A具有活性。选择每种酶对接性能最佳的前20种化合物,并通过RF模型进行验证。在针对BACE的RF模型中分类为活性的所有9种化合物都是双苄基异喹啉生物碱,并且在对接得分最高的结果中出现,这表明结果具有一致性。双苄基异喹啉生物碱,包括两种次生代谢产物(罗赖马宁和锡生藤碱-β-N-氧化物)与BACE的亲和力表明,这个骨架可以用作设计该酶新拮抗剂的模型。

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