Virtual screening and molecular dynamics studies of novel small molecules targeting Schistosoma mansoni DHODH: identification of potential inhibitors

被引:0
作者
Saudatu Chinade Ja’afaru [1 ]
Adamu Uzairu [2 ]
Vipin Kumar Mishra [1 ]
Muhammed Sani Sallau [3 ]
Muhammad Tukur Ibrahim [1 ]
Amit Dubey [1 ]
机构
[1] Ahmadu Bello University Zaria,Department of Chemistry
[2] Aliko Dangote University of Science and Technology,Department of Chemistry
[3] VIT Bhopal University Bhopal,Department of Chemistry
[4] Saveetha Institute of Medical and Technical Sciences,Department of Pharmacology, Saveetha Dental College and Hospital
[5] Quanta Calculus,Computational Chemistry and Drug Discovery Division
关键词
Schistosomiasis; Dihydroorotate dehydrogenase (SmDHODH); In silico Drug design; MD simulations; Density functional theory (DFT);
D O I
10.1007/s40203-024-00281-6
中图分类号
学科分类号
摘要
Schistosomiasis affects more than 200 million individuals globally, mainly in underprivileged areas, leading to long-term health issues and adding to socio-economic challenges. The existing reliance on a solitary medication (Praziquantel) gives rise to concerns about drug resistance and possible side effects. The exploration of alternative treatments is crucial to meet the demand for more efficient, safer, and cost-effective remedies, guaranteeing continuous control and eradication initiatives while reducing the risk of drug resistance. To address these issues, we employed a structure-based drug design approach, generating eighteen innovative inhibitors targeting Schistosoma mansoni Dihydroorotate dehydrogenase (SmDHODH). A robust QSAR model yielded promising statistical parameters, and molecular docking of 31 known inhibitors lead to the identification of a lead candidate (Compound 21) with favorable binding efficacy. Eighteen novel compounds were designed, showing improved binding affinities compared to both the lead compound and the standard drug, Praziquantel (PZQ). Molecular dynamics simulations and Density Functional Theory (DFT) affirmed the reactivity and stability of protein–ligand complexes under physiological conditions. These compounds exhibit strong inhibition of SmDHODH and meet drug-likeness criteria. Additionally, they demonstrate favorable pharmacokinetic properties, suggesting their potential effectiveness in treating schistosomiasis. Our study underscores the importance of understanding molecular properties for optimizing treatments against this neglected tropical disease.
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  • [31] Tijjani H(2023)Recent developments in the chemistry and in the biological applications of amidoximes J Taibah Univ Med Sci 18 295-102
  • [32] Adegunloye A(2020)Molecular determinants of blood-brain barrier permeation Sci Afr 9 e00503-12931
  • [33] Ishola A(2024)2D-QSAR, molecular docking, drug-likeness, and ADMET/pharmacokinetic predictions of some non-small cell lung cancer therapeutic agents PLoS ONE 19 e0302390-1865
  • [34] Balogun E(2021)Structure-based design and activity modeling of novel epidermal growth factor receptor kinase inhibitors; an in silico approach Mol Divers 25 1665-2409
  • [35] Malomo S(2022)Unveiling potent inhibitors for schistosomiasis through ligand-based drug design, molecular docking, molecular dynamics simulations and pharmacokinetics predictions Green Chem Lett Rev 15 825-5830
  • [36] Aminu KS(2021)Structure-based screening of novel lichen compounds against SARS coronavirus main protease (Mpro) as potentials inhibitors of COVID-19 Mol Syst Des Eng 6 946-263
  • [37] Uzairu A(2023)Supramolecular assembly in designing co-crystals of fumaric acid and pyrimidine/picolinate derivatives J Chem Inf Model 63 2133-7867
  • [38] Umar AB(2020)On the estimation of the molecular inaccessible volume and the molecular accessible surface of a ligand in protein–ligand systems Curr Org Chem 24 1161-2201
  • [39] Ibrahim MT(2022)Sensitivity of the RNA structure to ion conditions as probed by molecular dynamics simulations of common canonical RNA duplexes J Chem Inf Model 62 5645-1474
  • [40] Aminu KS(2023)Fluoro aryl azides: synthesis, reactions and applications Heliyon 9 e16057-395