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Hit identification against peptidyl-prolyl isomerase of Theileria annulata by combined virtual high-throughput screening and molecular dynamics simulation approach

dc.contributor.authorMUTLU, ÖZAL
dc.contributor.authorsSpahi S., MUTLU Ö., Sariyer E., Kocer S., Ugurel E., Turgut-Balik D.
dc.date.accessioned2023-07-25T12:20:08Z
dc.date.accessioned2026-01-11T06:19:58Z
dc.date.available2023-07-25T12:20:08Z
dc.date.issued2020-12-01
dc.description.abstractTheileria annulata secretes peptidyl prolyl isomerase enzyme (TaPIN1) to manipulate the host cell oncogenic signaling pathway by disrupting the tumor suppressor F-box and WD repeat domain-containing 7 (FBW7) protein level leading to an increased level of c-Jun proto-oncogene. Buparvaquone is a hydroxynaphthoquinone anti-theilerial drug and has been used to treat theileriosis. However, TaPIN1 contains the A53 P mutation that causes drug resistance. In this study, potential TaPIN1 inhibitors were investigated using a library of naphthoquinone derivatives. Comparative models of mutant (m) and wild type (wt) TaPIN1 were predicted and energy minimization was followed by structure validation. A naphthoquinone (hydroxynaphthalene-1,2-dione, hydroxynaphthalene-1,4-dione) and hydroxynaphthalene-2,3-dione library was screened by Schrödinger Glide HTVS, SP and XP docking methodologies and the docked compounds were ranked by the Glide XP scoring function. The two highest ranked docked compounds Compound 1 (4-hydroxy-3-[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxynaphthalene-1,2-dione) and Compound 2 (6-acetyl-1,4,5,7,8-pentahydroxynaphthalene-2,3-dione) were used for further molecular dynamics (MD) simulation studies. The MD results showed that ligand Compound 1 was located in the active site of both mTaPIN1 and wtTaPIN1 and could be proposed as a potential inhibitor by acting as a substrate antagonist. However, ligand Compound 2 was displaced away from the binding pocket of wtTaPIN1 but was located near the active site binding pocket of mTaPIN1 suggesting that could be selectively evaluated as a potential inhibitor against the mTaPIN1. Compound 1 and Compound 2 ligands are potential inhibitors but Compound 2 is suggested as a better inhibitor for mTaPIN1. These ligands could also further evaluated as potential inhibitors against human peptidyl prolyl isomerase which causes cancer in humans by using the same mechanism as TaPIN1.
dc.identifier.citationSpahi S., MUTLU Ö., Sariyer E., Kocer S., Ugurel E., Turgut-Balik D., "Hit identification against peptidyl-prolyl isomerase of Theileria annulata by combined virtual high-throughput screening and molecular dynamics simulation approach", Computational Biology and Chemistry, cilt.89, 2020
dc.identifier.doi10.1016/j.compbiolchem.2020.107398
dc.identifier.issn1476-9271
dc.identifier.urihttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85092158179&origin=inward
dc.identifier.urihttps://hdl.handle.net/11424/291635
dc.identifier.volume89
dc.language.isoeng
dc.relation.ispartofComputational Biology and Chemistry
dc.rightsinfo:eu-repo/semantics/openAccess
dc.subjectYaşam Bilimleri
dc.subjectMoleküler Biyoloji ve Genetik
dc.subjectSitogenetik
dc.subjectKimya
dc.subjectBiyokimya
dc.subjectBiyoinorganik Kimya
dc.subjectTemel Bilimler
dc.subjectLife Sciences
dc.subjectMolecular Biology and Genetics
dc.subjectCytogenetic
dc.subjectChemistry
dc.subjectBiochemistry
dc.subjectBioinorganic Chemistry
dc.subjectNatural Sciences
dc.subjectTemel Bilimler (SCI)
dc.subjectYaşam Bilimleri (LIFE)
dc.subjectMatematik
dc.subjectKİMYA, ORGANİK
dc.subjectMATEMATİK, DİSİPLİNLERARASI UYGULAMALAR
dc.subjectBİYOKİMYA VE MOLEKÜLER BİYOLOJİ
dc.subjectNatural Sciences (SCI)
dc.subjectLife Sciences (LIFE)
dc.subjectCHEMISTRY
dc.subjectMATHEMATICS
dc.subjectMOLECULAR BIOLOGY & GENETICS
dc.subjectCHEMISTRY, ORGANIC
dc.subjectMATHEMATICS, INTERDISCIPLINARY APPLICATIONS
dc.subjectBIOCHEMISTRY & MOLECULAR BIOLOGY
dc.subjectYapısal Biyoloji
dc.subjectOrganik Kimya
dc.subjectFizik Bilimleri
dc.subjectHesaplamalı Matematik
dc.subjectStructural Biology
dc.subjectOrganic Chemistry
dc.subjectPhysical Sciences
dc.subjectComputational Mathematics
dc.subjectMolecular dynamics simulation
dc.subjectOnkogenic signalling patway
dc.subjectPeptidyl prolyl isomerase
dc.subjectStructure-based drug design
dc.subjectTheileria annulata
dc.titleHit identification against peptidyl-prolyl isomerase of Theileria annulata by combined virtual high-throughput screening and molecular dynamics simulation approach
dc.typearticle
dspace.entity.typePublication

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