Quantum chemical studies, vibrational analysis, molecular dynamics and docking calculations of some ent-kaurane diterpenes from Annona vepretorum: a theoretical approach to promising anti-tumor molecules

被引:0
作者
Renyer A. Costa
Jonathas Nunes da Silva
Kelson M. T. Oliveira
Lívia M. Dutra
Emmanoel V. Costa
机构
[1] Federal University of Amazonas (DQ-UFAM),Department of Chemistry
[2] São Paulo State University (UNESP),Faculty of Sciences and Letters
[3] Federal University of Vale do São Francisco, Araraquara Campus
来源
Structural Chemistry | 2020年 / 31卷
关键词
-Kaurane diterpenes; DFT; Molecular docking; Molecular dynamics;
D O I
暂无
中图分类号
学科分类号
摘要
Diterpenes are a class of secondary metabolites that attract much attention due to the numerous biological activities presented, such as antimicrobial, antiviral, hypoglycemic, larvicidal, and antitumor. In the present study, four ent-kaurane diterpenes isolated from Annona vepretorum were analyzed through a DFT theoretical approach using the B3LYP exchange-correlation functional with 6-311G (2d, p) basis set, which allowed to obtain optimized geometry of the structures, highest occupied molecular orbital-lowest unoccupied molecular orbital (HOMO-LUMO), MEPS analysis, and vibrational wavenumbers. The analysis of the HOMO-LUMO energy gaps and reactive descriptor indices values allowed us to verify that the structures present a differentiated reactivity, indicating a differentiated activity. The comparative IR studies, allied to potential energy distribution calculation, revealed several characteristic vibrations that characterize the ent-kaurane skeleton, besides enabling the existence of intermolecular H-bonds through dimers formation. By molecular dynamic simulations, the interactions between diterpenes atoms and water, methanol, and chloroform were simulated, which enable us to analyze the stability of the studied structures in different solvated media and the best sites to form H-bonds. In addition, the stability of intramolecular H-bonds was evaluated. Guided by the in vitro cytotoxicity presented by the investigated diterpenes, molecular docking calculations were performed with the key enzymes NR3C1 and with rat-type II adenylyl cyclase C2 (ACC2) domain, revealing good interactions with the active site of the tested enzymes, justifying the previous experimental results.
引用
收藏
页码:1223 / 1243
页数:20
相关论文
共 239 条
[1]  
Vargas FS(2015)Biological activities and cytotoxicity of diterpenes from Molecules 20 6194-6210
[2]  
Almeida PDO(2016) ssp. Oleoresins PLoS ONE 11 e0168219-130
[3]  
Aranha ESP(2018)Ginkgolide B exerts cardioprotective properties against doxorubicin-induced cardiotoxicity by regulating reactive oxygen species, Akt and calcium signaling pathways in vitro and in vivo Phytochem Rev 17 113-1070
[4]  
Boleti APA(2008)Plant diterpenoid metabolism for manufacturing the biopharmaceuticals of tomorrow: prospects and challenges Curr Org Chem 12 1050-567
[5]  
Newton P(2016)ChemInform abstract: The chemistry of bioactive diterpenes Pharm Chem J 50 558-270
[6]  
Vasconcellos MC(2017)Biological evaluation of terrestrial and marine plant originated labdane diterpene Phytochem Rev 16 235-9949
[7]  
Veiga Junior VF(2017)Naturally occurring furanoditerpenoids: distribution, chemistry and their pharmacological activities J Agric Food Chem 65 9934-919
[8]  
Lima ES(2011)Structural diversity and biological activity of the genus Mini-Rev Med Chem 11 910-794
[9]  
Gao J(2006) terpenoids Res Chem Intermed 32 787-78
[10]  
Chen T(2013)Recent progress in the development of natural ent-kaurane diterpenoids with anti-tumor activity Braz J Med Biol Res 46 71-1500