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Identification of the Interactions Interference Between the PH and START Domain of CERT by Limonoid and HPA Inhibitors

The multi domain ceramide transfer protein (CERT) which contains the domains START and PH, is a protein that allows the transport of ceramide from the endoplasmic reticulum to the Golgi and so it plays a major role in sphingolipid metabolism. Recently, the crystal structure of the PH-START complex h...

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Autores principales: Ghoula, Mariem, Le Marec, Axelle, Magnan, Christophe, Le Stunff, Hervé, Taboureau, Olivier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7729066/
https://www.ncbi.nlm.nih.gov/pubmed/33330630
http://dx.doi.org/10.3389/fmolb.2020.603983
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author Ghoula, Mariem
Le Marec, Axelle
Magnan, Christophe
Le Stunff, Hervé
Taboureau, Olivier
author_facet Ghoula, Mariem
Le Marec, Axelle
Magnan, Christophe
Le Stunff, Hervé
Taboureau, Olivier
author_sort Ghoula, Mariem
collection PubMed
description The multi domain ceramide transfer protein (CERT) which contains the domains START and PH, is a protein that allows the transport of ceramide from the endoplasmic reticulum to the Golgi and so it plays a major role in sphingolipid metabolism. Recently, the crystal structure of the PH-START complex has been released, suggesting an inhibitory action of START to the binding of the PH domain to the Golgi apparatus and thus limiting the CERT activity. Our study presents a combination of docking and molecular dynamic simulations of N-(3-hydroxy-1-hydroxymethyl-3-phenylpropyl)alkanamides (HPA) analogs and limonoids compounds known to inhibit CERT. Through our computational study, we compared the binding affinity of 14 ligands at both domains (START and PH) and also at the START-PH interface, including several mutations known to play a role in the CERT’s activity. At the difference of HPA compounds, limonoids have a stronger binding affinity for the START-PH interface. Furthermore, 2 inhibitors (HPA-12 and isogedunin) were investigated through molecular dynamic (MD) simulations. 50 ns of molecular dynamic simulations have displayed the stability of isogedunin as well as keys residues in the binding of this molecule at the interface of the PH-START complex. Therefore, this study suggests a novel inhibitory mechanism of CERT for limonoid compounds involving the stabilization of the START-PH interface. This could help to develop new and potentially more selective inhibitors of this transporter, which is a potent target in cancer therapy.
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spelling pubmed-77290662020-12-15 Identification of the Interactions Interference Between the PH and START Domain of CERT by Limonoid and HPA Inhibitors Ghoula, Mariem Le Marec, Axelle Magnan, Christophe Le Stunff, Hervé Taboureau, Olivier Front Mol Biosci Molecular Biosciences The multi domain ceramide transfer protein (CERT) which contains the domains START and PH, is a protein that allows the transport of ceramide from the endoplasmic reticulum to the Golgi and so it plays a major role in sphingolipid metabolism. Recently, the crystal structure of the PH-START complex has been released, suggesting an inhibitory action of START to the binding of the PH domain to the Golgi apparatus and thus limiting the CERT activity. Our study presents a combination of docking and molecular dynamic simulations of N-(3-hydroxy-1-hydroxymethyl-3-phenylpropyl)alkanamides (HPA) analogs and limonoids compounds known to inhibit CERT. Through our computational study, we compared the binding affinity of 14 ligands at both domains (START and PH) and also at the START-PH interface, including several mutations known to play a role in the CERT’s activity. At the difference of HPA compounds, limonoids have a stronger binding affinity for the START-PH interface. Furthermore, 2 inhibitors (HPA-12 and isogedunin) were investigated through molecular dynamic (MD) simulations. 50 ns of molecular dynamic simulations have displayed the stability of isogedunin as well as keys residues in the binding of this molecule at the interface of the PH-START complex. Therefore, this study suggests a novel inhibitory mechanism of CERT for limonoid compounds involving the stabilization of the START-PH interface. This could help to develop new and potentially more selective inhibitors of this transporter, which is a potent target in cancer therapy. Frontiers Media S.A. 2020-11-27 /pmc/articles/PMC7729066/ /pubmed/33330630 http://dx.doi.org/10.3389/fmolb.2020.603983 Text en Copyright © 2020 Ghoula, Le Marec, Magnan, Le Stunff and Taboureau. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Molecular Biosciences
Ghoula, Mariem
Le Marec, Axelle
Magnan, Christophe
Le Stunff, Hervé
Taboureau, Olivier
Identification of the Interactions Interference Between the PH and START Domain of CERT by Limonoid and HPA Inhibitors
title Identification of the Interactions Interference Between the PH and START Domain of CERT by Limonoid and HPA Inhibitors
title_full Identification of the Interactions Interference Between the PH and START Domain of CERT by Limonoid and HPA Inhibitors
title_fullStr Identification of the Interactions Interference Between the PH and START Domain of CERT by Limonoid and HPA Inhibitors
title_full_unstemmed Identification of the Interactions Interference Between the PH and START Domain of CERT by Limonoid and HPA Inhibitors
title_short Identification of the Interactions Interference Between the PH and START Domain of CERT by Limonoid and HPA Inhibitors
title_sort identification of the interactions interference between the ph and start domain of cert by limonoid and hpa inhibitors
topic Molecular Biosciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7729066/
https://www.ncbi.nlm.nih.gov/pubmed/33330630
http://dx.doi.org/10.3389/fmolb.2020.603983
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