Open Access
NMK-TD-100, a Novel Microtubule Modulating Agent, Blocks Mitosis and Induces Apoptosis in HeLa Cells by Binding to Tubulin
Surela Bhattacharya
1
,
N Maruthi Kumar
2
,
Arnab Ganguli
1
,
Mukund P Tantak
2
,
Dalip Kumar
2
,
Gopal Chakrabarti
1
Тип публикации: Journal Article
Дата публикации: 2013-10-07
scimago Q1
wos Q2
БС1
SJR: 0.803
CiteScore: 5.4
Impact factor: 2.6
ISSN: 19326203
PubMed ID:
24116100
Multidisciplinary
Краткое описание
Thiadiazoles are one of the most widely utilized agents in medicinal chemistry, having a wide range of pharmacologic activity. Microtubules (MTs) have always remained a sought-after target in rapidly proliferating cancer cells. We screened for the growth inhibitory effect of synthetic 5-(3-indolyl)-2-substituted-1,3,4-thiadiazoles on cancer cells and identified NMK-TD-100, as the most potent agent. Cell viability experiments using human cervical carcinoma cell line (HeLa cells) indicated that the IC50 value was 1.42±0.11 µM for NMK-TD-100 for 48 h treatment. In further study, we examined the mode of interaction of NMK-TD-100 with tubulin and unraveled the cellular mechanism responsible for its anti-tumor activity. NMK-TD-100 induced arrest in mitotic phase of cell cycle, caused decline in mitochondrial membrane potential and induced apoptosis in HeLa cells. Immunofluorescence studies using an anti-α-tubulin antibody showed a significant depolymerization of the interphase microtubule network and spindle microtubule in HeLa cells in a concentration-dependent manner. However, the cytotoxicity of NMK-TD-100 towards human peripheral blood mononuclear cells (PBMC) was lower compared to that in cancer cells. Polymerization of tissue purified tubulin into microtubules was inhibited by NMK-TD-100 with an IC50 value of 17.5±0.35 µM. The binding of NMK-TD-100 with tubulin was studied using NMK-TD-100 fluorescence enhancement and intrinsic tryptophan fluorescence of tubulin. The stoichiometry of NMK-TD-100 binding to tubulin is 1:1 (molar ratio) with a dissociation constant of ~1 µM. Fluorescence spectroscopic and molecular modeling data showed that NMK-TD-100 binds to tubulin at a site which is very near to the colchicine binding site. The binding of NMK-TD-100 to tubulin was estimated to be ~10 times faster than that of colchicine. The results indicated that NMK-TD-100 exerted anti-proliferative activity by disrupting microtubule functions through tubulin binding and provided insights into its potential of being a chemotherapeutic agent.
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Bhattacharya S. et al. NMK-TD-100, a Novel Microtubule Modulating Agent, Blocks Mitosis and Induces Apoptosis in HeLa Cells by Binding to Tubulin // PLoS ONE. 2013. Vol. 8. No. 10. p. e76286.
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Bhattacharya S., Kumar N. M., Ganguli A., Tantak M. P., Kumar D., Chakrabarti G. NMK-TD-100, a Novel Microtubule Modulating Agent, Blocks Mitosis and Induces Apoptosis in HeLa Cells by Binding to Tubulin // PLoS ONE. 2013. Vol. 8. No. 10. p. e76286.
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TY - JOUR
DO - 10.1371/journal.pone.0076286
UR - https://doi.org/10.1371/journal.pone.0076286
TI - NMK-TD-100, a Novel Microtubule Modulating Agent, Blocks Mitosis and Induces Apoptosis in HeLa Cells by Binding to Tubulin
T2 - PLoS ONE
AU - Bhattacharya, Surela
AU - Kumar, N Maruthi
AU - Ganguli, Arnab
AU - Tantak, Mukund P
AU - Kumar, Dalip
AU - Chakrabarti, Gopal
PY - 2013
DA - 2013/10/07
PB - Public Library of Science (PLoS)
SP - e76286
IS - 10
VL - 8
PMID - 24116100
SN - 1932-6203
ER -
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@article{2013_Bhattacharya,
author = {Surela Bhattacharya and N Maruthi Kumar and Arnab Ganguli and Mukund P Tantak and Dalip Kumar and Gopal Chakrabarti},
title = {NMK-TD-100, a Novel Microtubule Modulating Agent, Blocks Mitosis and Induces Apoptosis in HeLa Cells by Binding to Tubulin},
journal = {PLoS ONE},
year = {2013},
volume = {8},
publisher = {Public Library of Science (PLoS)},
month = {oct},
url = {https://doi.org/10.1371/journal.pone.0076286},
number = {10},
pages = {e76286},
doi = {10.1371/journal.pone.0076286}
}
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MLA
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Bhattacharya, Surela, et al. “NMK-TD-100, a Novel Microtubule Modulating Agent, Blocks Mitosis and Induces Apoptosis in HeLa Cells by Binding to Tubulin.” PLoS ONE, vol. 8, no. 10, Oct. 2013, p. e76286. https://doi.org/10.1371/journal.pone.0076286.