Peptides Trapping Dioxins: A Docking-Based Inverse Screening Approach

A rapid and cost-effective computational methodology for designing and rationalizing the selection of small peptides as receptors for dioxin-like compounds was proposed. The backbone of the dioxin Ah receptor binding site was used to design a series of penta- and hexapeptide libraries, with 1400 ele...

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Main Authors: German Perez, Marcello Mascini, Valentina Lanzone, Manuel Sergi, Michele Del Carlo, Mauro Esposito, Dario Compagnone
Format: Article
Language:English
Published: Hindawi Limited 2013-01-01
Series:Journal of Chemistry
Online Access:http://dx.doi.org/10.1155/2013/491827
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spelling doaj-01310246d5924893958e10735ad7f76d2020-11-24T21:55:30ZengHindawi LimitedJournal of Chemistry2090-90632090-90712013-01-01201310.1155/2013/491827491827Peptides Trapping Dioxins: A Docking-Based Inverse Screening ApproachGerman Perez0Marcello Mascini1Valentina Lanzone2Manuel Sergi3Michele Del Carlo4Mauro Esposito5Dario Compagnone6Laboratory of Computational and Theoretical Chemistry, Faculty of Chemistry, University of Havana, 10400 Havana, CubaFaculty of Bioscience and Technology for Food, Agriculture, and Environment, University of Teramo, 64023 Teramo, ItalyFaculty of Bioscience and Technology for Food, Agriculture, and Environment, University of Teramo, 64023 Teramo, ItalyFaculty of Bioscience and Technology for Food, Agriculture, and Environment, University of Teramo, 64023 Teramo, ItalyFaculty of Bioscience and Technology for Food, Agriculture, and Environment, University of Teramo, 64023 Teramo, ItalyIstituto Zooprofilattico Sperimentale del Mezzogiorno, 80055 Portici, ItalyFaculty of Bioscience and Technology for Food, Agriculture, and Environment, University of Teramo, 64023 Teramo, ItalyA rapid and cost-effective computational methodology for designing and rationalizing the selection of small peptides as receptors for dioxin-like compounds was proposed. The backbone of the dioxin Ah receptor binding site was used to design a series of penta- and hexapeptide libraries, with 1400 elements in total. Peptide flexibility was considered and 10 conformers were found to be a good option to represent peptide conformational space with fair speed-accuracy ratio. Each peptide conformer was treated as a possible receptor, generating a dedicated box and then running a docking process using as ligands a family of 76 dibenzo-p-dioxins and 113 dibenzofurans mono- and polychlorinated. Significant predictions were confirmed by comparing primary structure of top and bottom ranked peptides binding dioxins confirming that scrambled positions of the same amino acids gave completely different predicted binding. The hexapeptide EWFQPW, with the best binding score, was chosen as selective sorbent material in solid-phase extraction. The retention performances were tested using the 2,3,7,8-tetrachlorodibenzo-p-dioxin and two polychlorinated biphenyls in order to verify the hexapeptide specificity. The solid-phase extraction experimental procedure was optimized, and analytical parameters of hexapeptide sorbent material were compared with the resin without hexapeptide and a commercial reversed phase cartridge.http://dx.doi.org/10.1155/2013/491827
collection DOAJ
language English
format Article
sources DOAJ
author German Perez
Marcello Mascini
Valentina Lanzone
Manuel Sergi
Michele Del Carlo
Mauro Esposito
Dario Compagnone
spellingShingle German Perez
Marcello Mascini
Valentina Lanzone
Manuel Sergi
Michele Del Carlo
Mauro Esposito
Dario Compagnone
Peptides Trapping Dioxins: A Docking-Based Inverse Screening Approach
Journal of Chemistry
author_facet German Perez
Marcello Mascini
Valentina Lanzone
Manuel Sergi
Michele Del Carlo
Mauro Esposito
Dario Compagnone
author_sort German Perez
title Peptides Trapping Dioxins: A Docking-Based Inverse Screening Approach
title_short Peptides Trapping Dioxins: A Docking-Based Inverse Screening Approach
title_full Peptides Trapping Dioxins: A Docking-Based Inverse Screening Approach
title_fullStr Peptides Trapping Dioxins: A Docking-Based Inverse Screening Approach
title_full_unstemmed Peptides Trapping Dioxins: A Docking-Based Inverse Screening Approach
title_sort peptides trapping dioxins: a docking-based inverse screening approach
publisher Hindawi Limited
series Journal of Chemistry
issn 2090-9063
2090-9071
publishDate 2013-01-01
description A rapid and cost-effective computational methodology for designing and rationalizing the selection of small peptides as receptors for dioxin-like compounds was proposed. The backbone of the dioxin Ah receptor binding site was used to design a series of penta- and hexapeptide libraries, with 1400 elements in total. Peptide flexibility was considered and 10 conformers were found to be a good option to represent peptide conformational space with fair speed-accuracy ratio. Each peptide conformer was treated as a possible receptor, generating a dedicated box and then running a docking process using as ligands a family of 76 dibenzo-p-dioxins and 113 dibenzofurans mono- and polychlorinated. Significant predictions were confirmed by comparing primary structure of top and bottom ranked peptides binding dioxins confirming that scrambled positions of the same amino acids gave completely different predicted binding. The hexapeptide EWFQPW, with the best binding score, was chosen as selective sorbent material in solid-phase extraction. The retention performances were tested using the 2,3,7,8-tetrachlorodibenzo-p-dioxin and two polychlorinated biphenyls in order to verify the hexapeptide specificity. The solid-phase extraction experimental procedure was optimized, and analytical parameters of hexapeptide sorbent material were compared with the resin without hexapeptide and a commercial reversed phase cartridge.
url http://dx.doi.org/10.1155/2013/491827
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