Identification of natural inhibitor against L1 β-lactamase present in Stenotrophomonas maltophilia

被引:0
作者
Sreenithya K. H
Dhananjay Jade
Michael A. Harrison
Shobana Sugumar
机构
[1] SRM Institute of Science and Technology,Department of Genetic Engineering, School of Bioengineering, College of Engineering and Technology
[2] University of Leeds,School of Biomedical Sciences
来源
Journal of Molecular Modeling | 2022年 / 28卷
关键词
L1 β-lactamase; Virtual screening; Docking; Molecular dynamics;
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摘要
Antibiotic resistance is threatening the medical industry in treating microbial infections. Many organisms are acquiring antibiotic resistance because of the continuous use of the same drug. Gram-negative organisms are developing multi-drug resistance properties (MDR) due to chromosomal level changes that occurred as a part of evolution or some intrinsic factors already present in the organism. Stenotrophomonas maltophilia falls under the category of multidrug-resistant organism. WHO has also urged to evaluate the scenario and develop new strategies for making this organism susceptible to otherwise resistant antibiotics. Using novel compounds as drugs can ameliorate the issue to some extent. The β-lactamase enzyme in the bacteria is responsible for inhibiting several drugs currently being used for treatment. This enzyme can be targeted to find an inhibitor that can inhibit the enzyme activity and make the organism susceptible to β-lactam antibiotics. Plants produce several secondary metabolites for their survival in adverse environments. Several phytoconstituents have antimicrobial properties and have been used in traditional medicine for a long time. The computational technologies can be exploited to find the best compound from many compounds. Virtual screening, molecular docking, and dynamic simulation methods are followed to get the best inhibitor for L1 β-lactamase. IMPPAT database is screened, and the top hit compounds are studied for ADMET properties. Finally, four compounds are selected to set for molecular dynamics simulation. After all the computational calculations, withanolide R is found to have a better binding and forms a stable complex with the protein. This compound can act as a potent natural inhibitor for L1 β-lactamase.
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[21]  
Eggimann P(2005)Hybrid QM/MM and DFT investigations of the catalytic mechanism and inhibition of the dinuclear zinc metallo-β-lactamase CcrA from Bacteroides fragilis J Am Chem Soc 127 4232-728
[22]  
Kapoor G(2006)Metallo-β-lactamases: novel weaponry for antibiotic resistance in bacteria Acc Chem Res 39 721-114
[23]  
Saigal S(2006)Ethnomedical plants used by the Valaiyan community of Piranmalai Hills (reserved forest), Tamilnadu, India - A pilot study African J Tradit Complement Altern Med 3 101-907
[24]  
Elongavan A(2002)The Protein Data Bank Acta Crystallogr Sect D Biol Crystallogr 58 899-W534
[25]  
Hamed RB(2018)IMPPAT: a curated database of Indian Medicinal Plants Phytochemistry and Therapeutics Sci Rep 8 4329-226
[26]  
Gomez-Castellanos JR(2009)AutoDock Vina: improving the speed and accuracy of docking with a new scoring function, efficient optimization, and multithreading J Comput Chem NA-NA 49 W530-122
[27]  
Henry L(2021)PLIP 2021: expanding the scope of the protein-ligand interaction profiler to DNA and RNA Nucleic Acids Res 2266 203-565
[28]  
Rahman M(2021)Free energy calculations for protein–ligand binding prediction Methods Mol Biol 31 114-695
[29]  
Khan MKA(2012)undefined (2012) Free energy calculations by the molecular mechanics Poisson− Boltzmann surface area method Wiley Online Libr 7 e37375-496
[30]  
Chen J(2012)Stenotrophomonas maltophilia infections in a general hospital: patient characteristics, antimicrobial susceptibility, and treatment outcome PLoS ONE 13 559-590