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Conservation of the conformational dynamics and ligand binding within M49 enzyme family

The hydrogen deuterium exchange (HDX) mass spectrometry combined with molecular dynamics (MD) simulations was employed to investigate conformational dynamics and ligand binding within the M49 family (dipeptidyl peptidase III family). Six dipeptidyl peptidase III (DPP III) orthologues, human, yeast,...

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Autores principales: Kazazić, Saša, Karačić, Zrinka, Sabljić, Igor, Agić, Dejan, Tomin, Marko, Abramić, Marija, Dadlez, Michal, Tomić, Antonija, Tomić, Sanja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9079729/
https://www.ncbi.nlm.nih.gov/pubmed/35542530
http://dx.doi.org/10.1039/c7ra13059g
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author Kazazić, Saša
Karačić, Zrinka
Sabljić, Igor
Agić, Dejan
Tomin, Marko
Abramić, Marija
Dadlez, Michal
Tomić, Antonija
Tomić, Sanja
author_facet Kazazić, Saša
Karačić, Zrinka
Sabljić, Igor
Agić, Dejan
Tomin, Marko
Abramić, Marija
Dadlez, Michal
Tomić, Antonija
Tomić, Sanja
author_sort Kazazić, Saša
collection PubMed
description The hydrogen deuterium exchange (HDX) mass spectrometry combined with molecular dynamics (MD) simulations was employed to investigate conformational dynamics and ligand binding within the M49 family (dipeptidyl peptidase III family). Six dipeptidyl peptidase III (DPP III) orthologues, human, yeast, three bacterial and one plant (moss) were studied. According to the results, all orthologues seem to be quite compact wherein DPP III from the thermophile Caldithrix abyssi seems to be the most compact. The protected regions are located within the two domains core and the overall flexibility profile consistent with semi-closed conformation as the dominant protein form in solution. Besides conservation of conformational dynamics within the M49 family, we also investigated the ligand, pentapeptide tynorphin, binding. By comparing HDX data obtained for unliganded protein with those obtained for its complex with tynorphin it was found that the ligand binding mode is conserved within the family. Tynorphin binds within inter-domain cleft, close to the lower domain β-core and induces its stabilization in all orthologues. Docking combined with MD simulations revealed details of the protein flexibility as well as of the enzyme–ligand interactions.
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spelling pubmed-90797292022-05-09 Conservation of the conformational dynamics and ligand binding within M49 enzyme family Kazazić, Saša Karačić, Zrinka Sabljić, Igor Agić, Dejan Tomin, Marko Abramić, Marija Dadlez, Michal Tomić, Antonija Tomić, Sanja RSC Adv Chemistry The hydrogen deuterium exchange (HDX) mass spectrometry combined with molecular dynamics (MD) simulations was employed to investigate conformational dynamics and ligand binding within the M49 family (dipeptidyl peptidase III family). Six dipeptidyl peptidase III (DPP III) orthologues, human, yeast, three bacterial and one plant (moss) were studied. According to the results, all orthologues seem to be quite compact wherein DPP III from the thermophile Caldithrix abyssi seems to be the most compact. The protected regions are located within the two domains core and the overall flexibility profile consistent with semi-closed conformation as the dominant protein form in solution. Besides conservation of conformational dynamics within the M49 family, we also investigated the ligand, pentapeptide tynorphin, binding. By comparing HDX data obtained for unliganded protein with those obtained for its complex with tynorphin it was found that the ligand binding mode is conserved within the family. Tynorphin binds within inter-domain cleft, close to the lower domain β-core and induces its stabilization in all orthologues. Docking combined with MD simulations revealed details of the protein flexibility as well as of the enzyme–ligand interactions. The Royal Society of Chemistry 2018-04-10 /pmc/articles/PMC9079729/ /pubmed/35542530 http://dx.doi.org/10.1039/c7ra13059g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Kazazić, Saša
Karačić, Zrinka
Sabljić, Igor
Agić, Dejan
Tomin, Marko
Abramić, Marija
Dadlez, Michal
Tomić, Antonija
Tomić, Sanja
Conservation of the conformational dynamics and ligand binding within M49 enzyme family
title Conservation of the conformational dynamics and ligand binding within M49 enzyme family
title_full Conservation of the conformational dynamics and ligand binding within M49 enzyme family
title_fullStr Conservation of the conformational dynamics and ligand binding within M49 enzyme family
title_full_unstemmed Conservation of the conformational dynamics and ligand binding within M49 enzyme family
title_short Conservation of the conformational dynamics and ligand binding within M49 enzyme family
title_sort conservation of the conformational dynamics and ligand binding within m49 enzyme family
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9079729/
https://www.ncbi.nlm.nih.gov/pubmed/35542530
http://dx.doi.org/10.1039/c7ra13059g
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