Publication:
Conformational Analysis And Vibrational Spectroscopic Investigation Of L-Proline-Tyrosine (L-Pro-Tyr) Dipeptide

dc.contributor.authorKecel, Serda
dc.contributor.authorÖzel, Ayşen
dc.contributor.authorÇelik, Sefa
dc.contributor.authorAgaeva, Gulshen
dc.contributor.authorAKYÜZ, SEVİM
dc.contributor.authorIDTR110526tr_TR
dc.contributor.authorIDTR110745tr_TR
dc.contributor.authorIDTR10127tr_TR
dc.contributor.authorIDTR110147tr_TR
dc.date.accessioned2016-09-06T11:09:52Z
dc.date.available2016-09-06T11:09:52Z
dc.date.issued2011-05-03
dc.description.abstractIn this study the conformational properties of the drug based dipeptide L-proline-L-tyrosine (Pro-Tyr) in its monomeric and dimeric forms, have been investigated by molecular mechanic and ab initio calculations. The energy calculations on Pro-Tyr dipeptide as a function of side chains torsion angles, enable us to determine their energetically preferred conformations. One-hundred and eight possible conformations of Pro-Tyr dipeptide have been investigated by conformational analysis and the low energy conformations of dipeptide have been determined by using the Ramachandran maps. Afterwards, the geometrical parameters of obtained stable conformations were used as starting parameters for quantum chemical calculations. The molecular structure of Pro-Tyr dipeptide, in the ground electronic state (in vacuum) was optimized by density functional theory method with B3LYP functional and using 6-31G(d,p) and 6-31++G(d,p) basis sets. The dimeric forms of the dipeptide were also formed and energetically preferred conformations of dimers were investigated using the same method and the same level of theory by using 6-31G(d,p) basic set. The fundamental vibrational wavenumbers, IR intensities and Raman activities of the global conformation of monomeric and dimeric forms of the dipeptide were calculated and compared with the experimental vibrational spectra of solid Pro-Tyr dipeptide. The total energy distributions (TED) of the vibrational modes were calculated by using Scaled Quantum Mechanical (SQM) analysis. Vibrational assignment was performed on the basis of calculated total energy distribution (TED) of the modes. (C) 2011 Elsevier B.V. All rights reserved.tr_TR
dc.identifier.issn0022-2860
dc.identifier.scopus2-s2.0-79955479278
dc.identifier.scopus2-s2.0-79955479278en
dc.identifier.urihttp://hdl.handle.net/11413/1412
dc.identifier.wos291066000056
dc.identifier.wos291066000056en
dc.language.isoen_UStr_TR
dc.publisherElsevier Science Bv, Po Box 211, 1000 Ae Amsterdam, Netherlandstr_TR
dc.relationJournal Of Molecular Structuretr_TR
dc.subjectconformational analysistr_TR
dc.subjectdensity functional theorytr_TR
dc.subjectdipeptidetr_TR
dc.subjectIR and raman spectratr_TR
dc.subjectprolinetr_TR
dc.subjecttyrosine ab-initiotr_TR
dc.subjectraman-spectroscopytr_TR
dc.subjectpeptide modelstr_TR
dc.subjectFT-IRtr_TR
dc.subjectconformerstr_TR
dc.subjectDFTtr_TR
dc.subjectkonformasyon analizitr_TR
dc.subjectyoğunluk fonksiyonu teorisitr_TR
dc.subjectIR ve Raman spektrumlarıtr_TR
dc.subjectprolintr_TR
dc.subjecttirozin ab-initiotr_TR
dc.subjectraman-spektroskopisitr_TR
dc.subjectpeptid modelleritr_TR
dc.subjectkonformerlertr_TR
dc.titleConformational Analysis And Vibrational Spectroscopic Investigation Of L-Proline-Tyrosine (L-Pro-Tyr) Dipeptidetr_TR
dc.typeArticle
dspace.entity.typePublication
local.indexed.atscopus
local.indexed.atwos
relation.isAuthorOfPublication70600e97-ae14-4ca5-b357-0fd647a25331
relation.isAuthorOfPublication.latestForDiscovery70600e97-ae14-4ca5-b357-0fd647a25331

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