Classical QSAR and Docking Simulation of 4-Pyridone Derivatives for Their Antimalarial Activity

被引:11
作者
Flores-Sumoza, Maryury [1 ]
Alcazar, Jackson J. [2 ]
Marquez, Edgar [3 ]
Mora, Jose R. [4 ,5 ]
Lezama, Jesus [1 ]
Puello, Esneyder [6 ]
机构
[1] Univ Oriente, Dept Quim, Lab Fisicoquim Organ & Quim Computac, Escuela Ciencias, Cumana 6001, Venezuela
[2] Pontificia Univ Catolica Chile, Dept Quim, Casilla 306, Santiago 6094411, Chile
[3] Univ Norte, Fac Ciencias Basicas, Dept Quim & Biol, Grp Invest Quim & Biol, Carrera 51B,Km 5,Via Puerto Colombia, Barranquilla 081007, Colombia
[4] Univ San Francisco Quito, Grp Quim Computac & Teor QCT, Via Interoceanica, Quito 170901, Ecuador
[5] Univ San Francisco Quito, Inst Simulac Computac ISC USF, Colegio Politecn Ciencias & Ingn Diego Robles, Via Interoceanica, Quito 170901, Ecuador
[6] Univ Atlantico, Grp Invest Oxi Hidrotratamiento Catalitico & Nuev, Programa Quim Ciencias Basicas, Barranquilla 081001, Colombia
关键词
computational study; DFT; nitrogen compounds; molecular descriptors; MITOCHONDRIAL ELECTRON-TRANSPORT; MOLECULAR-BASIS; DRUG DISCOVERY; RESISTANCE; INHIBITORS; HARDNESS; BINDING;
D O I
10.3390/molecules23123166
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
In this work, the minimum energy structures of 22 4-pyridone derivatives have been optimized at Density Functional Theory level, and several quantum molecular, including electronic and thermodynamic descriptors, were computed for these substrates in order to obtain a statistical and meaningful QSAR equation. In this sense, by using multiple linear regressions, five mathematical models have been obtained. The best model with only four descriptors (r(2) = 0.86, Q(2) = 0.92, S.E.P = 0.38) was validated by the leave-one-out cross-validation method. The antimalarial activity can be explained by the combination of the four mentioned descriptors e.g., electronic potential, dipolar momentum, partition coefficient and molar refractivity. The statistical parameters of this model suggest that it is robust enough to predict the antimalarial activity of new possible compounds; consequently, three small chemical modifications into the structural core of these compounds were performed specifically on the most active compound of the series (compound 13). These three new suggested compounds were leveled as 13A, 13B and 13C, and the predicted biological antimalarial activity is 0.02 mu M, 0.03 mu M, and 0.07 mu M, respectively. In order to complement these results focused on the possible action mechanism of the substrates, a docking simulation was included for these new structures as well as for the compound 13 and the docking scores (binding affinity) obtained for the interaction of these substrates with the cytochrome bc1, were -7.5, -7.2, -6.9 and -7.5 kcal/mol for 13A, 13B, 13C and compound 13, respectively, which suggests that these compounds are good candidates for its biological application in this illness.
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页数:12
相关论文
共 42 条
[1]  
Adhikari N, 2010, INTERNET ELECT J MOL, V9, P1
[2]   Inhibiting Plasmodium cytochrome bc1: a complex issue [J].
Barton, Victoria ;
Fisher, Nicholas ;
Biagini, Giancarlo A. ;
Ward, Stephen A. ;
O'Neill, Paul M. .
CURRENT OPINION IN CHEMICAL BIOLOGY, 2010, 14 (04) :440-446
[3]   Structural analysis of chloroquine resistance reversal by imipramine analogs [J].
Bhattacharjee, AK ;
Kyle, DE ;
Vennerstrom, JL .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2001, 45 (09) :2655-2657
[4]   Acridinediones:: Selective and potent inhibitors of the malaria parasite mitochondrial bc1 complex [J].
Biagini, Giancarlo A. ;
Fisher, Nicholas ;
Berry, Neil ;
Stocks, Paul A. ;
Meunier, Brigitte ;
Williams, Dominic P. ;
Bonar-Law, Richard ;
Bray, Patrick G. ;
Owen, Andrew ;
O'Neill, Paul M. ;
Ward, Stephen A. .
MOLECULAR PHARMACOLOGY, 2008, 73 (05) :1347-1355
[5]   Structural analysis of atovaquone-inhibited cytochrome bc1 complex reveals the molecular basis of antimalarial drug action [J].
Birth, Dominic ;
Kao, Wei-Chun ;
Hunte, Carola .
NATURE COMMUNICATIONS, 2014, 5
[6]   Potent antimalarial 4-pyridones with improved physico-chemical properties [J].
Bueno, Jose M. ;
Manzano, Pilar ;
Garcia, Maria C. ;
Chicharro, Jesus ;
Puente, Margarita ;
Lorenzo, Milagros ;
Garcia, Adolfo ;
Ferrer, Santiago ;
Gomez, Ruben M. ;
Fraile, Maria T. ;
Lavandera, Jose L. ;
Fiandor, Jose M. ;
Vidal, Jaume ;
Herreros, Esperanza ;
Gargallo-Viola, Domingo .
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2011, 21 (18) :5214-5218
[7]   Relations between potential energy, electronic chemical potential, and hardness profiles [J].
CardenasJiron, GI ;
GutierrezOliva, S ;
Melin, J ;
ToroLabbe, A .
JOURNAL OF PHYSICAL CHEMISTRY A, 1997, 101 (25) :4621-4627
[8]   Interactions of quinoline antimalarials with hematin in solution [J].
Egan, Timothy J. .
JOURNAL OF INORGANIC BIOCHEMISTRY, 2006, 100 (5-6) :916-926
[9]   Molecular modeling studies of bromopyrrole alkaloids as potential antimalarial compounds: a DFT approach [J].
Flores, Maryury C. ;
Marquez, Edgar A. ;
Mora, Jose R. .
MEDICINAL CHEMISTRY RESEARCH, 2018, 27 (03) :844-856
[10]   Conceptual density functional theory [J].
Geerlings, P ;
De Proft, F ;
Langenaeker, W .
CHEMICAL REVIEWS, 2003, 103 (05) :1793-1873