volume 64 issue 15 pages 5991-6002

Ligand-Based Virtual Screening for Discovery of Indole Derivatives as Potent DNA Gyrase ATPase Inhibitors Active against Mycobacterium tuberculosis and Hit Validation by Biological Assays

Bongkochawan Pakamwong 1
Paptawan Thongdee 1
Bundit Kamsri 1
Nareudon Phusi 1
Somjintana Taveepanich 1
Kampanart Chayajarus 1
Auradee Punkvang 2
Supa Hannongbua 3
Jidapa Sangswan 4
Khomson Suttisintong 5
Sanya Sureram 6
Prasat Kittakoop 6, 7, 8
Poonpilas Hongmanee 9
Pitak Santanirand 9
Jiraporn Leanpolchareanchai 10
James Spencer 11
Adrian J Mulholland 12
Pornpan Pungpo 1
7
 
Program in Chemical Sciences, Chulabhorn Graduate Institute, Bangkok 10210, Thailand
8
 
Center of Excellence on Environmental Health and Toxicology (EHT), OPS, Ministry of Higher Education, Science, Research and Innovation, Bangkok 10210, Thailand
Publication typeJournal Article
Publication date2024-07-12
scimago Q1
wos Q1
SJR1.467
CiteScore9.8
Impact factor5.3
ISSN15499596, 1549960X
Abstract
Mycobacterium tuberculosis is the single most important global infectious disease killer and a World Health Organization critical priority pathogen for development of new antimicrobials. M. tuberculosis DNA gyrase is a validated target for anti-TB agents, but those in current use target DNA breakage-reunion, rather than the ATPase activity of the GyrB subunit. Here, virtual screening, subsequently validated by whole-cell and enzyme inhibition assays, was applied to identify candidate compounds that inhibit M. tuberculosis GyrB ATPase activity from the Specs compound library. This approach yielded six compounds: four carbazole derivatives (1, 2, 3, and 8), the benzoindole derivative 11, and the indole derivative 14. Carbazole derivatives can be considered a new scaffold for M. tuberculosis DNA gyrase ATPase inhibitors. IC50 values of compounds 8, 11, and 14 (0.26, 0.56, and 0.08 μM, respectively) for inhibition of M. tuberculosis DNA gyrase ATPase activity are 5-fold, 2-fold, and 16-fold better than the known DNA gyrase ATPase inhibitor novobiocin. MIC values of these compounds against growth of M. tuberculosis H37Ra are 25.0, 3.1, and 6.2 μg/mL, respectively, superior to novobiocin (MIC > 100.0 μg/mL). Molecular dynamics simulations of models of docked GyrB:inhibitor complexes suggest that hydrogen bond interactions with GyrB Asp79 are crucial for high-affinity binding of compounds 8, 11, and 14 to M. tuberculosis GyrB for inhibition of ATPase activity. These data demonstrate that virtual screening can identify known and new scaffolds that inhibit both M. tuberculosis DNA gyrase ATPase activity in vitro and growth of M. tuberculosis bacteria.
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Pakamwong B. et al. Ligand-Based Virtual Screening for Discovery of Indole Derivatives as Potent DNA Gyrase ATPase Inhibitors Active against Mycobacterium tuberculosis and Hit Validation by Biological Assays // Journal of Chemical Information and Modeling. 2024. Vol. 64. No. 15. pp. 5991-6002.
GOST all authors (up to 50) Copy
Pakamwong B., Thongdee P., Kamsri B., Phusi N., Taveepanich S., Chayajarus K., Kamsri P., Punkvang A., Hannongbua S., Sangswan J., Suttisintong K., Sureram S., Kittakoop P., Hongmanee P., Santanirand P., Leanpolchareanchai J., Spencer J., Mulholland A. J., Pungpo P. Ligand-Based Virtual Screening for Discovery of Indole Derivatives as Potent DNA Gyrase ATPase Inhibitors Active against Mycobacterium tuberculosis and Hit Validation by Biological Assays // Journal of Chemical Information and Modeling. 2024. Vol. 64. No. 15. pp. 5991-6002.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1021/acs.jcim.4c00511
UR - https://pubs.acs.org/doi/10.1021/acs.jcim.4c00511
TI - Ligand-Based Virtual Screening for Discovery of Indole Derivatives as Potent DNA Gyrase ATPase Inhibitors Active against Mycobacterium tuberculosis and Hit Validation by Biological Assays
T2 - Journal of Chemical Information and Modeling
AU - Pakamwong, Bongkochawan
AU - Thongdee, Paptawan
AU - Kamsri, Bundit
AU - Phusi, Nareudon
AU - Taveepanich, Somjintana
AU - Chayajarus, Kampanart
AU - Kamsri, Pharit
AU - Punkvang, Auradee
AU - Hannongbua, Supa
AU - Sangswan, Jidapa
AU - Suttisintong, Khomson
AU - Sureram, Sanya
AU - Kittakoop, Prasat
AU - Hongmanee, Poonpilas
AU - Santanirand, Pitak
AU - Leanpolchareanchai, Jiraporn
AU - Spencer, James
AU - Mulholland, Adrian J
AU - Pungpo, Pornpan
PY - 2024
DA - 2024/07/12
PB - American Chemical Society (ACS)
SP - 5991-6002
IS - 15
VL - 64
PMID - 38993154
SN - 1549-9596
SN - 1549-960X
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2024_Pakamwong,
author = {Bongkochawan Pakamwong and Paptawan Thongdee and Bundit Kamsri and Nareudon Phusi and Somjintana Taveepanich and Kampanart Chayajarus and Pharit Kamsri and Auradee Punkvang and Supa Hannongbua and Jidapa Sangswan and Khomson Suttisintong and Sanya Sureram and Prasat Kittakoop and Poonpilas Hongmanee and Pitak Santanirand and Jiraporn Leanpolchareanchai and James Spencer and Adrian J Mulholland and Pornpan Pungpo},
title = {Ligand-Based Virtual Screening for Discovery of Indole Derivatives as Potent DNA Gyrase ATPase Inhibitors Active against Mycobacterium tuberculosis and Hit Validation by Biological Assays},
journal = {Journal of Chemical Information and Modeling},
year = {2024},
volume = {64},
publisher = {American Chemical Society (ACS)},
month = {jul},
url = {https://pubs.acs.org/doi/10.1021/acs.jcim.4c00511},
number = {15},
pages = {5991--6002},
doi = {10.1021/acs.jcim.4c00511}
}
MLA
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MLA Copy
Pakamwong, Bongkochawan, et al. “Ligand-Based Virtual Screening for Discovery of Indole Derivatives as Potent DNA Gyrase ATPase Inhibitors Active against Mycobacterium tuberculosis and Hit Validation by Biological Assays.” Journal of Chemical Information and Modeling, vol. 64, no. 15, Jul. 2024, pp. 5991-6002. https://pubs.acs.org/doi/10.1021/acs.jcim.4c00511.
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