Structure-based design, optimization of lead, synthesis, and biological evaluation of compounds active against Trypanosoma cruzi

被引:3
作者
de Almeida, Gleybson Correia [1 ]
de Oliveira, Gerliny Bezerra [1 ]
Monte, Zenaide da Silva [1 ]
Costa, Erick Caique Santos [2 ]
Falcao, Emerson Peter da Silva [3 ]
Scotti, Luciana [4 ]
Scotti, Marcus Tullius [4 ]
Silva, Ricardo de Oliveira [5 ]
Pereira, Valeria Rego Alves [6 ]
da Silva, Elis Dionisio [6 ]
Sales, Policarpo Ademar [6 ]
Cavalcante, Marton Kaique de Andrade [6 ]
de Melo, Sebastiao Jose [1 ,2 ,7 ]
机构
[1] Univ Fed Pernambuco, UFPE, Dept Pharmaceut Sci, Postgrad Program Pharmaceut Sci, Recife, Brazil
[2] Univ Fed Pernambuco, UFPE, Dept Biosci, Postgrad Program Biol Sci, Recife, Brazil
[3] Fed Univ Pernambuco St Alto Reservatorio, Vitoria Acad Ctr, Vitoria de Santo Antao, Brazil
[4] Univ Fed Paraiba, Hlth Sci Ctr, Program Nat & Synthet Bioact Prod PgPNSB, Lab Cheminformat, Joao Pessoa, Brazil
[5] Univ Fed Pernambuco, Ctr Exact & Nat Sci, Dept Fundamental Chem, Av Journalist Anibal Fernandes, Recife, Brazil
[6] Univ Fed Pernambuco, Oswaldo Cruz Fdn, Aggeu Magalhaes Res Ctr, Campus Av Prof Moraes Rego, Recife, Brazil
[7] Univ Fed Pernambuco, UFPE, Dept Biosci, Postgrad Program Biol Sci, Av Moraes Rego,1235,Cidade Univ, BR-50740560 Recife, PE, Brazil
关键词
cruzipain; lead compound; molecular docking; pyrimidines; structure-based; Trypanosoma cruzi; CHAGAS-DISEASE; MOLECULAR DOCKING; CYSTEINE PROTEASE; DRUG DISCOVERY; DERIVATIVES; INHIBITORS; ANTIVIRALS; MODELS;
D O I
10.1111/cbdd.14294
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Chagas' disease affects approximately eight million people throughout the world, especially the poorest individuals. The protozoan that causes this disease-Trypanosoma cruzi-has the enzyme cruzipain, which is the main therapeutic target. As no available medications have satisfactory effectiveness and safety, it is of fundamental importance to design and synthesize novel analogues that are more active and selective. In the present study, molecular docking and the in silico prediction of ADMET properties were used as strategies to optimize the trypanocidal activity of the pyrimidine compound ZN3F based on interactions with the target site in cruzipain. From the computational results, eight 4-amino-5carbonitrile-pyrimidine analogues were proposed, synthesized (5a-f and 7g-h) and, tested in vitro on the trypomastigote form of the Tulahuen strain of T. cruzi. The in silico study showed that the designed analogues bond favorably to important amino acid residues of the active site in cruzipain. An in vitro evaluation of cytotoxicity was performed on L929 mammal cell lines. All derivatives inhibited the Tulahuen strain of T. cruzi and also exhibited lower toxicity to L929 cells. The 5e product, in particular, proved to be a potent, selective (IC50 = 2.79 +/- 0.00 mu M, selectivity index = 31.3) inhibitor of T. cruzi. The present results indicated the effectiveness of drugs based on the structure of the receptor, revealing the potential trypanocidal of pyrimidines. This study also provides information on molecular aspects for the inhibition of cruzipain.
引用
收藏
页码:843 / 856
页数:14
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