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Molecular docking based virtual screening of compounds for inhibiting sortase A in L.monocytogenes

Listeriosis is considered as an important public health issue. Sortase A (srtA) is an enzyme with catalytic role in L. monocytogenes that breaks the junction between threonine and glycine in the LPXTG motif (a key motif in internalin A (InlA) that plays an important role in listeriosis). Inactivatio...

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Autores principales: Rashidieh, Behnam, Madani, Zohreh, Azam, Mahtab Khoshnejad, Maklavani, Saeedeh Khalesi, Akbari, Newsha Ramezani, Tavakoli, Shaghayegh, Rigi, Garshasb
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Biomedical Informatics 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4748019/
https://www.ncbi.nlm.nih.gov/pubmed/26912950
http://dx.doi.org/10.6026/97320630011501
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author Rashidieh, Behnam
Madani, Zohreh
Azam, Mahtab Khoshnejad
Maklavani, Saeedeh Khalesi
Akbari, Newsha Ramezani
Tavakoli, Shaghayegh
Rigi, Garshasb
author_facet Rashidieh, Behnam
Madani, Zohreh
Azam, Mahtab Khoshnejad
Maklavani, Saeedeh Khalesi
Akbari, Newsha Ramezani
Tavakoli, Shaghayegh
Rigi, Garshasb
author_sort Rashidieh, Behnam
collection PubMed
description Listeriosis is considered as an important public health issue. Sortase A (srtA) is an enzyme with catalytic role in L. monocytogenes that breaks the junction between threonine and glycine in the LPXTG motif (a key motif in internalin A (InlA) that plays an important role in listeriosis). Inactivation of srtA was shown to inhibit anchoring of the invasion protein InIA. This is in addition to inhibiting peptidoglycan-associated LPXTG proteins. Therefore, it is of interest to inhibit strA using potential molecules. Here, we describe the design of an inhibitor with high binding affinity to srtA with the ability to prevent the attachment of srtA to the LPXTG proteins such as InIJ. A homology model of Listeria monocytogenes Sortase A was developed using MODELLER (version 9.12). We screened StrA to 100,000 drug-like ligands from the Zinc database using Molecular docking and virtual screening tool PyRX). Pharmacokinetic analysis using the FAFDrugs(3) web server along with ADME and toxicity analysis based on Lipinski rule of five were adopted for the screening exercise followed by oral toxicity check using PROTOX (a server) for every 10 successive hits. The results from PROTOX server indicated that Lig #1 (with LD50 of 2000mg/kg) and Lig #7 (with LD50 of 2000mg/kg) have toxicity class 4 and Lig #3 (with LD50 of 14430mg/kg) has toxicity class 6. Subsequent modifications of these structures followed by FAFDrugs(3) analysis for high bioavailability value selected Lig #7 according to Lipinski rules of five. Thus, Lig #7 with IUPAC name ((R)-4-{(S)-1-[(S)-2-Amino-4-methylvaleryl]-2-pyrrolidinyl}-1-[(S)-1-(ethylamino) carbonyl-propylamino] -2-propyl-1, 4- butanedione) is suggested as a potential candidate for srtA inhibition for further consideration.
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spelling pubmed-47480192016-02-24 Molecular docking based virtual screening of compounds for inhibiting sortase A in L.monocytogenes Rashidieh, Behnam Madani, Zohreh Azam, Mahtab Khoshnejad Maklavani, Saeedeh Khalesi Akbari, Newsha Ramezani Tavakoli, Shaghayegh Rigi, Garshasb Bioinformation Hypothesis Listeriosis is considered as an important public health issue. Sortase A (srtA) is an enzyme with catalytic role in L. monocytogenes that breaks the junction between threonine and glycine in the LPXTG motif (a key motif in internalin A (InlA) that plays an important role in listeriosis). Inactivation of srtA was shown to inhibit anchoring of the invasion protein InIA. This is in addition to inhibiting peptidoglycan-associated LPXTG proteins. Therefore, it is of interest to inhibit strA using potential molecules. Here, we describe the design of an inhibitor with high binding affinity to srtA with the ability to prevent the attachment of srtA to the LPXTG proteins such as InIJ. A homology model of Listeria monocytogenes Sortase A was developed using MODELLER (version 9.12). We screened StrA to 100,000 drug-like ligands from the Zinc database using Molecular docking and virtual screening tool PyRX). Pharmacokinetic analysis using the FAFDrugs(3) web server along with ADME and toxicity analysis based on Lipinski rule of five were adopted for the screening exercise followed by oral toxicity check using PROTOX (a server) for every 10 successive hits. The results from PROTOX server indicated that Lig #1 (with LD50 of 2000mg/kg) and Lig #7 (with LD50 of 2000mg/kg) have toxicity class 4 and Lig #3 (with LD50 of 14430mg/kg) has toxicity class 6. Subsequent modifications of these structures followed by FAFDrugs(3) analysis for high bioavailability value selected Lig #7 according to Lipinski rules of five. Thus, Lig #7 with IUPAC name ((R)-4-{(S)-1-[(S)-2-Amino-4-methylvaleryl]-2-pyrrolidinyl}-1-[(S)-1-(ethylamino) carbonyl-propylamino] -2-propyl-1, 4- butanedione) is suggested as a potential candidate for srtA inhibition for further consideration. Biomedical Informatics 2015-11-30 /pmc/articles/PMC4748019/ /pubmed/26912950 http://dx.doi.org/10.6026/97320630011501 Text en © 2015 Biomedical Informatics This is an Open Access article which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. This is distributed under the terms of the Creative Commons Attribution License.
spellingShingle Hypothesis
Rashidieh, Behnam
Madani, Zohreh
Azam, Mahtab Khoshnejad
Maklavani, Saeedeh Khalesi
Akbari, Newsha Ramezani
Tavakoli, Shaghayegh
Rigi, Garshasb
Molecular docking based virtual screening of compounds for inhibiting sortase A in L.monocytogenes
title Molecular docking based virtual screening of compounds for inhibiting sortase A in L.monocytogenes
title_full Molecular docking based virtual screening of compounds for inhibiting sortase A in L.monocytogenes
title_fullStr Molecular docking based virtual screening of compounds for inhibiting sortase A in L.monocytogenes
title_full_unstemmed Molecular docking based virtual screening of compounds for inhibiting sortase A in L.monocytogenes
title_short Molecular docking based virtual screening of compounds for inhibiting sortase A in L.monocytogenes
title_sort molecular docking based virtual screening of compounds for inhibiting sortase a in l.monocytogenes
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4748019/
https://www.ncbi.nlm.nih.gov/pubmed/26912950
http://dx.doi.org/10.6026/97320630011501
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