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Etude théorique des métabolites secondaires des végétaux et des composés de synthèse sur le plan de l'activité biologique

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dc.contributor.author Bensegueni Abderrahmane
dc.contributor.author Bencharif Mustapha
dc.date.accessioned 2022-05-24T08:34:17Z
dc.date.available 2022-05-24T08:34:17Z
dc.date.issued 2007-12-30
dc.identifier.uri http://depot.umc.edu.dz/handle/123456789/4169
dc.description 91 f.
dc.description.abstract The modeling of the biomolecular interactions is a powerful technique in dataprocessing simulations. Many models and software allow the simulation of the protein-ligand interactions. Generally the ligand is of small size. Several software of docking was tested on various molecules of synthesis derived from the 1,3 diphényl propyne-2-one and natural polyphenols of the class of the flavonoïds. The evaluation of their energy of interaction with the 15-lipoxygenase and the cyclooxygenase-2, enzymes strongly implied in various metabolic disorders (inflammatory, atherosclerosis, cancerous) made it possible to release those presenting the best inhibiting effect in agreement with the values of the IC 50 obtained from the literature. It is the luteolin and compound l in the case of the 15-lipoxygenase and the compound j in the case of the cyclooxygénase-2. The values of their energy of interaction are respectively of -28.70 Kj/mol., -27.50 Kj/mol and of -28.54 Kj/mol. The absence of experimental data on the biological activity of the natural substances with the cyclooxygénase-2 led us to make a simulation of their energy of interaction with this enzyme using three programs: FlexX, Autodock and X-score. It arises that the luteolin, with a lowest binding energy, presents the best inhibiting effect.. We could improve also the binding energy of the DHB, powerful inhibiting of LOX-3, by changing its carboxylic function by the group CH 2 OH (ΔG = - 21.127 Kj/mol). If the hydroxyl group is placed in position 5 of DHB, the binding energy of compound 9 enhances to -16.959 Kj/mol. The biological potentialities of three compounds were checked by their pharmacokinetic properties, the lowest molecular weight and positive values of Log P. However, it is necessary to check these results by an experimental study
dc.language.iso fre
dc.publisher Université Frères Mentouri - Constantine 1
dc.subject Biologie
dc.subject Flavonoides
dc.subject Energie de liaison
dc.subject Docking moléculaire
dc.subject Modélisation moléculaire
dc.subject Complexe enzyme-inhibiteur
dc.subject Lipoxygénase
dc.subject Cyclooxygénase
dc.subject Intéractions ligand-proteine
dc.subject Binding energy
dc.subject Molecular docking
dc.subject Molecular Modeling
dc.subject InhibitorEnzyme omplexe
dc.subject Lipoxygenase
dc.subject Cyclooxygenase
dc.subject Flavonoids
dc.subject 1,3 diphenyl propyne-2-one-1
dc.subject ligand-protein Interactions
dc.subject طاقة الأرتباط
dc.subject مركب أنزیم-مثبط ؛لیبوكسیجیناز
dc.subject سیكلوأوكسیجیناز
dc.subject نمود جیة جزیئیة
dc.subject تأ رات مرتبط-بروتینطط
dc.subject فلافونویدات
dc.subject دیفینیل بروبین- 2اون-1 1،3
dc.subject Biochimie appliquee
dc.title Etude théorique des métabolites secondaires des végétaux et des composés de synthèse sur le plan de l'activité biologique
dc.title simulation par docking)arrimage) moléculaire sur la lipoxygénase et la cyclooxygénase
dc.type Thesis
dc.coverage 01 Disponible à la salle de recherche 02 Disponibles au magazin de la B.U.C. 01 CD


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