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Conformational Properties of New Thiosemicarbazone and Thiocarbohydrazone Derivatives and Their Possible Targets

The structure assignment and conformational analysis of thiosemicarbazone KKI15 and thiocarbohydrazone KKI18 were performed through homonuclear and heteronuclear 2D Nuclear Magnetic Resonance (NMR) spectroscopy (2D-COSY, 2D-NOESY, 2D-HSQC, and 2D-HMBC) and quantum mechanics (QM) calculations using F...

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Autores principales: Georgiou, Nikitas, Katsogiannou, Aikaterini, Skourtis, Dimitrios, Iatrou, Hermis, Tzeli, Demeter, Vassiliou, Stamatia, Javornik, Uroš, Plavec, Janez, Mavromoustakos, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9028911/
https://www.ncbi.nlm.nih.gov/pubmed/35458736
http://dx.doi.org/10.3390/molecules27082537
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author Georgiou, Nikitas
Katsogiannou, Aikaterini
Skourtis, Dimitrios
Iatrou, Hermis
Tzeli, Demeter
Vassiliou, Stamatia
Javornik, Uroš
Plavec, Janez
Mavromoustakos, Thomas
author_facet Georgiou, Nikitas
Katsogiannou, Aikaterini
Skourtis, Dimitrios
Iatrou, Hermis
Tzeli, Demeter
Vassiliou, Stamatia
Javornik, Uroš
Plavec, Janez
Mavromoustakos, Thomas
author_sort Georgiou, Nikitas
collection PubMed
description The structure assignment and conformational analysis of thiosemicarbazone KKI15 and thiocarbohydrazone KKI18 were performed through homonuclear and heteronuclear 2D Nuclear Magnetic Resonance (NMR) spectroscopy (2D-COSY, 2D-NOESY, 2D-HSQC, and 2D-HMBC) and quantum mechanics (QM) calculations using Functional Density Theory (DFT). After the structure identification of the compounds, various conformations of the two compounds were calculated using DFT. The two molecules showed the most energy-favorable values when their two double bonds adopted the E configuration. These configurations were compatible with the spatial correlations observed in the 2D-NOESY spectrum. In addition, due to the various isomers that occurred, the energy of the transition states from one isomer to another was calculated. Finally, molecular binding experiments were performed to detect potential targets for KKI15 and KKI18 derived from SwissAdme. In silico molecular binding experiments showed favorable binding energy values for all four enzymes studied. The strongest binding energy was observed in the enzyme butyrylcholinesterase. ADMET calculations using the preADMET and pKCSm software showed that the two molecules appear as possible drug leads.
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spelling pubmed-90289112022-04-23 Conformational Properties of New Thiosemicarbazone and Thiocarbohydrazone Derivatives and Their Possible Targets Georgiou, Nikitas Katsogiannou, Aikaterini Skourtis, Dimitrios Iatrou, Hermis Tzeli, Demeter Vassiliou, Stamatia Javornik, Uroš Plavec, Janez Mavromoustakos, Thomas Molecules Article The structure assignment and conformational analysis of thiosemicarbazone KKI15 and thiocarbohydrazone KKI18 were performed through homonuclear and heteronuclear 2D Nuclear Magnetic Resonance (NMR) spectroscopy (2D-COSY, 2D-NOESY, 2D-HSQC, and 2D-HMBC) and quantum mechanics (QM) calculations using Functional Density Theory (DFT). After the structure identification of the compounds, various conformations of the two compounds were calculated using DFT. The two molecules showed the most energy-favorable values when their two double bonds adopted the E configuration. These configurations were compatible with the spatial correlations observed in the 2D-NOESY spectrum. In addition, due to the various isomers that occurred, the energy of the transition states from one isomer to another was calculated. Finally, molecular binding experiments were performed to detect potential targets for KKI15 and KKI18 derived from SwissAdme. In silico molecular binding experiments showed favorable binding energy values for all four enzymes studied. The strongest binding energy was observed in the enzyme butyrylcholinesterase. ADMET calculations using the preADMET and pKCSm software showed that the two molecules appear as possible drug leads. MDPI 2022-04-14 /pmc/articles/PMC9028911/ /pubmed/35458736 http://dx.doi.org/10.3390/molecules27082537 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Georgiou, Nikitas
Katsogiannou, Aikaterini
Skourtis, Dimitrios
Iatrou, Hermis
Tzeli, Demeter
Vassiliou, Stamatia
Javornik, Uroš
Plavec, Janez
Mavromoustakos, Thomas
Conformational Properties of New Thiosemicarbazone and Thiocarbohydrazone Derivatives and Their Possible Targets
title Conformational Properties of New Thiosemicarbazone and Thiocarbohydrazone Derivatives and Their Possible Targets
title_full Conformational Properties of New Thiosemicarbazone and Thiocarbohydrazone Derivatives and Their Possible Targets
title_fullStr Conformational Properties of New Thiosemicarbazone and Thiocarbohydrazone Derivatives and Their Possible Targets
title_full_unstemmed Conformational Properties of New Thiosemicarbazone and Thiocarbohydrazone Derivatives and Their Possible Targets
title_short Conformational Properties of New Thiosemicarbazone and Thiocarbohydrazone Derivatives and Their Possible Targets
title_sort conformational properties of new thiosemicarbazone and thiocarbohydrazone derivatives and their possible targets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9028911/
https://www.ncbi.nlm.nih.gov/pubmed/35458736
http://dx.doi.org/10.3390/molecules27082537
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