Arabinosyl transferase inhibitor design against Mycobacterium tuberculosis using ligand based drug design approach
Antibiotic resistance is a major challenge to combat tuberculosis. Several reports of antibiotic resistance strains of Mycobacterium tuberculosis is strongly demanding the need of new and alternative antibiotics for its inhibition. Therefore, current investigation is an attempt to screen few lead m...
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doaj-c590328a25ad4fa08fa882a3e48c33c82020-11-24T23:02:01ZengBangladesh Pharmacological SocietyBangladesh Journal of Pharmacology1991-00882014-05-019210.3329/bjp.v9i2.18270Arabinosyl transferase inhibitor design against Mycobacterium tuberculosis using ligand based drug design approachBhaskor Kolita0Dhrubajyoti Gogoi1Partha Pratim Dutta2Manobjyoti Bordoloi3Rajib Lochan Bezbaruah4Centre for Bioinformatics Studies, Dibrugarh University, Dibrugarh, AssamDBT-Bioinformatics Infrastructure Facility, Biotechnology Division, North East Institute of Science and Technology (Formerly Regional Research Laboratory), CSIR, Government of India, Jorhat, AssamNatural Product Chemistry Division, North East Institute of Science and Technology (Formerly Regional Research Laboratory), CSIR, Government of India, Jorhat, AssamNatural Product Chemistry Division, North East Institute of Science and Technology (Formerly Regional Research Laboratory), CSIR, Government of India, Jorhat, AssamDBT-Bioinformatics Infrastructure Facility, Biotechnology Division, North East Institute of Science and Technology (Formerly Regional Research Laboratory), CSIR, Government of India, Jorhat, Assam Antibiotic resistance is a major challenge to combat tuberculosis. Several reports of antibiotic resistance strains of Mycobacterium tuberculosis is strongly demanding the need of new and alternative antibiotics for its inhibition. Therefore, current investigation is an attempt to screen few lead molecules for the inhibition of arbinosyl transferase enzyme of M. tuberculosis. The inhibition of this enzyme is an established target of many antibiotics especially ethambutol. Herein, we have considered the structure of ethambutol as a starting point to screen active compound then ethambutol. Similar compounds were searched in chemical database and six compounds were identified and considered as selective arbinosyl transferase inhibitor based on physiochemical properties, bioactivity and ADME with least docking score. The compounds viz. ZINC00388344, ZINC003884, Chemspider2057082, ZINC-00388344, ZINC0038846, Chemspider2057082, Etha17 (analog) and Etha10 (analog) were finally screened and recommended for in vitro investigation. https://www.banglajol.info/index.php/BJP/article/view/18270Arbinosyl transferaseDockingEthambutolMycobacterium tuberculosis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bhaskor Kolita Dhrubajyoti Gogoi Partha Pratim Dutta Manobjyoti Bordoloi Rajib Lochan Bezbaruah |
spellingShingle |
Bhaskor Kolita Dhrubajyoti Gogoi Partha Pratim Dutta Manobjyoti Bordoloi Rajib Lochan Bezbaruah Arabinosyl transferase inhibitor design against Mycobacterium tuberculosis using ligand based drug design approach Bangladesh Journal of Pharmacology Arbinosyl transferase Docking Ethambutol Mycobacterium tuberculosis |
author_facet |
Bhaskor Kolita Dhrubajyoti Gogoi Partha Pratim Dutta Manobjyoti Bordoloi Rajib Lochan Bezbaruah |
author_sort |
Bhaskor Kolita |
title |
Arabinosyl transferase inhibitor design against Mycobacterium tuberculosis using ligand based drug design approach |
title_short |
Arabinosyl transferase inhibitor design against Mycobacterium tuberculosis using ligand based drug design approach |
title_full |
Arabinosyl transferase inhibitor design against Mycobacterium tuberculosis using ligand based drug design approach |
title_fullStr |
Arabinosyl transferase inhibitor design against Mycobacterium tuberculosis using ligand based drug design approach |
title_full_unstemmed |
Arabinosyl transferase inhibitor design against Mycobacterium tuberculosis using ligand based drug design approach |
title_sort |
arabinosyl transferase inhibitor design against mycobacterium tuberculosis using ligand based drug design approach |
publisher |
Bangladesh Pharmacological Society |
series |
Bangladesh Journal of Pharmacology |
issn |
1991-0088 |
publishDate |
2014-05-01 |
description |
Antibiotic resistance is a major challenge to combat tuberculosis. Several reports of antibiotic resistance strains of Mycobacterium tuberculosis is strongly demanding the need of new and alternative antibiotics for its inhibition. Therefore, current investigation is an attempt to screen few lead molecules for the inhibition of arbinosyl transferase enzyme of M. tuberculosis. The inhibition of this enzyme is an established target of many antibiotics especially ethambutol. Herein, we have considered the structure of ethambutol as a starting point to screen active compound then ethambutol. Similar compounds were searched in chemical database and six compounds were identified and considered as selective arbinosyl transferase inhibitor based on physiochemical properties, bioactivity and ADME with least docking score. The compounds viz. ZINC00388344, ZINC003884, Chemspider2057082, ZINC-00388344, ZINC0038846, Chemspider2057082, Etha17 (analog) and Etha10 (analog) were finally screened and recommended for in vitro investigation.
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topic |
Arbinosyl transferase Docking Ethambutol Mycobacterium tuberculosis |
url |
https://www.banglajol.info/index.php/BJP/article/view/18270 |
work_keys_str_mv |
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