Docking studies of Diphenylether Derivatives with Enoyl-ACP-Reductase of Plasmodium falciparum

dc.contributor.authorKaur, Ravinder
dc.contributor.supervisorChhibber, Manmohan
dc.date.accessioned2018-10-12T11:25:25Z
dc.date.available2018-10-12T11:25:25Z
dc.date.issued2018-10-12
dc.descriptionMaster of Science in Biochemistryen_US
dc.description.abstractMalaria is one of the leading causes of death among infectious diseases. Among five species of the disease causing organisms, namely <i>Plasmodium<i>, two <i>P. falciparum<i> and <i>P. Vivax<i> are noxious. Diphenyl ethers are known to inhibit fatty acid biosynthesis in most organisms including <i>Plasmodium<i>. In this study, selected diphenyl ether molecules were docked against enoyl-Acyl Carrier Protein- reductase of <i>P. falciparum<i>. Using Triclosan, a known inhibitor of the enzyme, as standard fourteen molecules were docked using Autodock 4.0 and various interaction and binding energies were observed. Seven of the fourteen compounds were nitro while rest others were containing amino group at ortho position of the ether linkage. Compound 9 showed the least binding energy of -9.7 Kcal/mol as compared to -9.8 Kcal/mol for the standard triclosan. Compound 5 having nitro group displayed maximum binding energy -6.9 Kcal/mol and exhibits minimum affinity towards enoyl-Acyl Carrier Protein- reductase of <i>P. falciparum<i>.en_US
dc.identifier.urihttp://hdl.handle.net/10266/5420
dc.language.isoenen_US
dc.subjectPlasmodiumen_US
dc.subjectAutodocken_US
dc.subjectMalariaen_US
dc.subjectDocking studiesen_US
dc.subjectEnoyl-ACP-reductaseen_US
dc.titleDocking studies of Diphenylether Derivatives with Enoyl-ACP-Reductase of Plasmodium falciparumen_US
dc.typeThesisen_US

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