Čolović, Mirjana B.

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  • Čolović, Mirjana B. (3)

Author's Bibliography

A new acetylcholinesterase allosteric site responsible for binding voluminous negatively charged molecules – the role in the mechanism of AChE inhibition

Bondžić, Aleksandra M.; Lazarević-Pašti, Tamara D.; Leskovac, Andreja R.; Petrović, Sandra; Čolović, Mirjana B.; Parac-Vogt Tatjana; Janjić, Goran

(Elsevier, 2020)

TY  - JOUR
AU  - Bondžić, Aleksandra M.
AU  - Lazarević-Pašti, Tamara D.
AU  - Leskovac, Andreja R.
AU  - Petrović, Sandra
AU  - Čolović, Mirjana B.
AU  - Parac-Vogt Tatjana
AU  - Janjić, Goran
PY  - 2020
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/3582
AB  - Acetylcholinesterase (AChE) inhibitors are important in the treatment of neurodegenerative diseases. Two inhibitors,
12-tungstosilicic acid (WSiA) and 12-tungstophosphoric acid (WPA), which have polyoxometalate
(POM) type structure, have been shown to inhibit AChE activity in nM concentration. Circular dichroism and
tryptophan fluorescence spectroscopy demonstrated that the AChE inhibition was not accompanied by significant
changes in the secondary structure of the enzyme. The molecular docking approach has revealed a new
allosteric binding site, termed β-allosteric site (β-AS), which is considered responsible for the inhibition of AChE
by POMs. To the best of our knowledge, this is the first study reporting a new allosteric site that is considered
responsible for AChE inhibition by voluminous and negatively charged molecules such as POMs. The selected
POMs were further subjected to genotoxicity testing using human peripheral blood cells as a model system. It
was shown that WSiA and WPA induced a mild cytostatic but not genotoxic effects in human lymphocytes, which
indicates their potential to be used as medicinal drugs. The identification of non-toxic compounds capable of
binding to an allosteric site that so far has not been considered responsible for enzyme inhibition could be
fundamental for the development of new drug design strategies and the discovery of more efficient AChE
modulators.
PB  - Elsevier
T2  - European Journal of Pharmaceutical Sciences
T1  - A new acetylcholinesterase allosteric site responsible for binding voluminous negatively charged molecules – the role in the mechanism of AChE inhibition
VL  - 151
SP  - 105376
DO  - 10.1016/j.ejps.2020.105376
ER  - 
@article{
author = "Bondžić, Aleksandra M. and Lazarević-Pašti, Tamara D. and Leskovac, Andreja R. and Petrović, Sandra and Čolović, Mirjana B. and Parac-Vogt Tatjana and Janjić, Goran",
year = "2020",
abstract = "Acetylcholinesterase (AChE) inhibitors are important in the treatment of neurodegenerative diseases. Two inhibitors,
12-tungstosilicic acid (WSiA) and 12-tungstophosphoric acid (WPA), which have polyoxometalate
(POM) type structure, have been shown to inhibit AChE activity in nM concentration. Circular dichroism and
tryptophan fluorescence spectroscopy demonstrated that the AChE inhibition was not accompanied by significant
changes in the secondary structure of the enzyme. The molecular docking approach has revealed a new
allosteric binding site, termed β-allosteric site (β-AS), which is considered responsible for the inhibition of AChE
by POMs. To the best of our knowledge, this is the first study reporting a new allosteric site that is considered
responsible for AChE inhibition by voluminous and negatively charged molecules such as POMs. The selected
POMs were further subjected to genotoxicity testing using human peripheral blood cells as a model system. It
was shown that WSiA and WPA induced a mild cytostatic but not genotoxic effects in human lymphocytes, which
indicates their potential to be used as medicinal drugs. The identification of non-toxic compounds capable of
binding to an allosteric site that so far has not been considered responsible for enzyme inhibition could be
fundamental for the development of new drug design strategies and the discovery of more efficient AChE
modulators.",
publisher = "Elsevier",
journal = "European Journal of Pharmaceutical Sciences",
title = "A new acetylcholinesterase allosteric site responsible for binding voluminous negatively charged molecules – the role in the mechanism of AChE inhibition",
volume = "151",
pages = "105376",
doi = "10.1016/j.ejps.2020.105376"
}
Bondžić, A. M., Lazarević-Pašti, T. D., Leskovac, A. R., Petrović, S., Čolović, M. B., Parac-Vogt Tatjana,& Janjić, G.. (2020). A new acetylcholinesterase allosteric site responsible for binding voluminous negatively charged molecules – the role in the mechanism of AChE inhibition. in European Journal of Pharmaceutical Sciences
Elsevier., 151, 105376.
https://doi.org/10.1016/j.ejps.2020.105376
Bondžić AM, Lazarević-Pašti TD, Leskovac AR, Petrović S, Čolović MB, Parac-Vogt Tatjana, Janjić G. A new acetylcholinesterase allosteric site responsible for binding voluminous negatively charged molecules – the role in the mechanism of AChE inhibition. in European Journal of Pharmaceutical Sciences. 2020;151:105376.
doi:10.1016/j.ejps.2020.105376 .
Bondžić, Aleksandra M., Lazarević-Pašti, Tamara D., Leskovac, Andreja R., Petrović, Sandra, Čolović, Mirjana B., Parac-Vogt Tatjana, Janjić, Goran, "A new acetylcholinesterase allosteric site responsible for binding voluminous negatively charged molecules – the role in the mechanism of AChE inhibition" in European Journal of Pharmaceutical Sciences, 151 (2020):105376,
https://doi.org/10.1016/j.ejps.2020.105376 . .
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The influence of oxo-bridged binuclear gold(III) complexes on Na/K-ATPase activity: a joint experimental and theoretical approach

Bondžić, Aleksandra M.; Čolović, Mirjana B.; Janjić, Goran; Zarić, Božidarka; Petrović, Sandra; Krstic, Danijela Z.; Marzo, Tiziano; Messori, Luigi; Vasić, Vesna M.

(Springer, New York, 2017)

TY  - JOUR
AU  - Bondžić, Aleksandra M.
AU  - Čolović, Mirjana B.
AU  - Janjić, Goran
AU  - Zarić, Božidarka
AU  - Petrović, Sandra
AU  - Krstic, Danijela Z.
AU  - Marzo, Tiziano
AU  - Messori, Luigi
AU  - Vasić, Vesna M.
PY  - 2017
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/2143
AB  - The in vitro effects of oxo-bridged binuclear gold(III) complexes, i.e., [(bipy2Me)(2)Au-2(mu-O)(2)][PF6](2) (Auoxo6), Au-2[(bipydmb-H)(2)(mu-O)][PF6] (Au(2)bipyC) and [Au-2(phen(2Me))(2)(mu-O)(2)](PF6)(2) (Au(2)phen) on Na/K-ATPase, purified from the porcine cerebral cortex, were investigated. All three studied gold complexes inhibited the enzyme activity in a concentration-dependent manner achieving IC50 values in the low micromolar range. Kinetic analysis suggested an uncompetitive mode of inhibition for Auoxo6 and Au(2)bipyC, and a mixed type one for Au(2)phen. Docking studies indicated that the inhibitory actions of all tested complexes are related to E2-P enzyme conformation binding to ion channel and intracellular part between N and P sub-domain. In addition, Au(2)phen was able to inhibit the enzyme by interacting with its extracellular part as well. Toxic effects of the gold(III) complexes were evaluated in vitro by following lactate dehydrogenase activity in rat brain synaptosomes and incidence of micronuclei and cytokinesis-block proliferation index in cultivated human lymphocytes. All investigated complexes turned out to induce cytogenetic damage consisting of a significant decrease in cell proliferation and an increase in micronuclei in a dose-dependent manner. On the other hand, lactate dehydrogenase activity, an indicator of membrane integrity/viability, was not affected by Auoxo6 and Au(2)bipyC, while Au(2)phen slightly modified its activity.
PB  - Springer, New York
T2  - Journal of Biological Inorganic Chemistry
T1  - The influence of oxo-bridged binuclear gold(III) complexes on Na/K-ATPase activity: a joint experimental and theoretical approach
VL  - 22
IS  - 6
SP  - 819
EP  - 832
DO  - 10.1007/s00775-017-1460-5
ER  - 
@article{
author = "Bondžić, Aleksandra M. and Čolović, Mirjana B. and Janjić, Goran and Zarić, Božidarka and Petrović, Sandra and Krstic, Danijela Z. and Marzo, Tiziano and Messori, Luigi and Vasić, Vesna M.",
year = "2017",
abstract = "The in vitro effects of oxo-bridged binuclear gold(III) complexes, i.e., [(bipy2Me)(2)Au-2(mu-O)(2)][PF6](2) (Auoxo6), Au-2[(bipydmb-H)(2)(mu-O)][PF6] (Au(2)bipyC) and [Au-2(phen(2Me))(2)(mu-O)(2)](PF6)(2) (Au(2)phen) on Na/K-ATPase, purified from the porcine cerebral cortex, were investigated. All three studied gold complexes inhibited the enzyme activity in a concentration-dependent manner achieving IC50 values in the low micromolar range. Kinetic analysis suggested an uncompetitive mode of inhibition for Auoxo6 and Au(2)bipyC, and a mixed type one for Au(2)phen. Docking studies indicated that the inhibitory actions of all tested complexes are related to E2-P enzyme conformation binding to ion channel and intracellular part between N and P sub-domain. In addition, Au(2)phen was able to inhibit the enzyme by interacting with its extracellular part as well. Toxic effects of the gold(III) complexes were evaluated in vitro by following lactate dehydrogenase activity in rat brain synaptosomes and incidence of micronuclei and cytokinesis-block proliferation index in cultivated human lymphocytes. All investigated complexes turned out to induce cytogenetic damage consisting of a significant decrease in cell proliferation and an increase in micronuclei in a dose-dependent manner. On the other hand, lactate dehydrogenase activity, an indicator of membrane integrity/viability, was not affected by Auoxo6 and Au(2)bipyC, while Au(2)phen slightly modified its activity.",
publisher = "Springer, New York",
journal = "Journal of Biological Inorganic Chemistry",
title = "The influence of oxo-bridged binuclear gold(III) complexes on Na/K-ATPase activity: a joint experimental and theoretical approach",
volume = "22",
number = "6",
pages = "819-832",
doi = "10.1007/s00775-017-1460-5"
}
Bondžić, A. M., Čolović, M. B., Janjić, G., Zarić, B., Petrović, S., Krstic, D. Z., Marzo, T., Messori, L.,& Vasić, V. M.. (2017). The influence of oxo-bridged binuclear gold(III) complexes on Na/K-ATPase activity: a joint experimental and theoretical approach. in Journal of Biological Inorganic Chemistry
Springer, New York., 22(6), 819-832.
https://doi.org/10.1007/s00775-017-1460-5
Bondžić AM, Čolović MB, Janjić G, Zarić B, Petrović S, Krstic DZ, Marzo T, Messori L, Vasić VM. The influence of oxo-bridged binuclear gold(III) complexes on Na/K-ATPase activity: a joint experimental and theoretical approach. in Journal of Biological Inorganic Chemistry. 2017;22(6):819-832.
doi:10.1007/s00775-017-1460-5 .
Bondžić, Aleksandra M., Čolović, Mirjana B., Janjić, Goran, Zarić, Božidarka, Petrović, Sandra, Krstic, Danijela Z., Marzo, Tiziano, Messori, Luigi, Vasić, Vesna M., "The influence of oxo-bridged binuclear gold(III) complexes on Na/K-ATPase activity: a joint experimental and theoretical approach" in Journal of Biological Inorganic Chemistry, 22, no. 6 (2017):819-832,
https://doi.org/10.1007/s00775-017-1460-5 . .
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Investigation of reaction between quercetin and Au(III) in acidic media: mechanism and identification of reaction products

Bondžić, Aleksandra M.; Lazarević-Pašti, Tamara D.; Bondžić, Bojan; Čolović, Mirjana B.; Jadranin, Milka; Vasić, Vesna M.

(Royal Soc Chemistry, Cambridge, 2013)

TY  - JOUR
AU  - Bondžić, Aleksandra M.
AU  - Lazarević-Pašti, Tamara D.
AU  - Bondžić, Bojan
AU  - Čolović, Mirjana B.
AU  - Jadranin, Milka
AU  - Vasić, Vesna M.
PY  - 2013
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/1293
AB  - The aim of the present paper was to investigate the reaction of quercetin, the flavonol very often used as a dietary supplement, with [AuCl4](-) ions. The reaction was studied spectrophotometrically using the equimolar solutions in 1 : 1 water-methanol at pH similar to 2. The spectrophotometric data indicated the formation of the products with an absorption maximum at 295 nm in all cases, characteristic of the oxidized forms of quercetin. HPLC coupled with DAD and LC-MS analysis of the reaction products suggested that the oxidation of quercetin resulted in the generation of similar metabolites including quinone and various oxidized quercetin-solvent adducts. In addition, cyclic voltammetric measurements confirmed that under applied experimental conditions, the reduction of Au(III) to Au(0) took place. The reduction species in the reaction mixture were Au(III) ions, while Au(I) disproportionates back to Au(III) and Au(0). The newly generated Au(III) ions further oxidized 3'-4'-dihydroxy groups of quercetin adducts obtained after first 2e(-) oxidation, giving the final reaction products. Based on the identification of reaction products, the reaction mechanism for the oxidation of quercetin in the presence of Au(III) which involves two 2e(-) transfer processes was proposed.
PB  - Royal Soc Chemistry, Cambridge
T2  - New Journal of Chemistry
T1  - Investigation of reaction between quercetin and Au(III) in acidic media: mechanism and identification of reaction products
VL  - 37
IS  - 4
SP  - 901
EP  - 908
DO  - 10.1039/c2nj40742f
ER  - 
@article{
author = "Bondžić, Aleksandra M. and Lazarević-Pašti, Tamara D. and Bondžić, Bojan and Čolović, Mirjana B. and Jadranin, Milka and Vasić, Vesna M.",
year = "2013",
abstract = "The aim of the present paper was to investigate the reaction of quercetin, the flavonol very often used as a dietary supplement, with [AuCl4](-) ions. The reaction was studied spectrophotometrically using the equimolar solutions in 1 : 1 water-methanol at pH similar to 2. The spectrophotometric data indicated the formation of the products with an absorption maximum at 295 nm in all cases, characteristic of the oxidized forms of quercetin. HPLC coupled with DAD and LC-MS analysis of the reaction products suggested that the oxidation of quercetin resulted in the generation of similar metabolites including quinone and various oxidized quercetin-solvent adducts. In addition, cyclic voltammetric measurements confirmed that under applied experimental conditions, the reduction of Au(III) to Au(0) took place. The reduction species in the reaction mixture were Au(III) ions, while Au(I) disproportionates back to Au(III) and Au(0). The newly generated Au(III) ions further oxidized 3'-4'-dihydroxy groups of quercetin adducts obtained after first 2e(-) oxidation, giving the final reaction products. Based on the identification of reaction products, the reaction mechanism for the oxidation of quercetin in the presence of Au(III) which involves two 2e(-) transfer processes was proposed.",
publisher = "Royal Soc Chemistry, Cambridge",
journal = "New Journal of Chemistry",
title = "Investigation of reaction between quercetin and Au(III) in acidic media: mechanism and identification of reaction products",
volume = "37",
number = "4",
pages = "901-908",
doi = "10.1039/c2nj40742f"
}
Bondžić, A. M., Lazarević-Pašti, T. D., Bondžić, B., Čolović, M. B., Jadranin, M.,& Vasić, V. M.. (2013). Investigation of reaction between quercetin and Au(III) in acidic media: mechanism and identification of reaction products. in New Journal of Chemistry
Royal Soc Chemistry, Cambridge., 37(4), 901-908.
https://doi.org/10.1039/c2nj40742f
Bondžić AM, Lazarević-Pašti TD, Bondžić B, Čolović MB, Jadranin M, Vasić VM. Investigation of reaction between quercetin and Au(III) in acidic media: mechanism and identification of reaction products. in New Journal of Chemistry. 2013;37(4):901-908.
doi:10.1039/c2nj40742f .
Bondžić, Aleksandra M., Lazarević-Pašti, Tamara D., Bondžić, Bojan, Čolović, Mirjana B., Jadranin, Milka, Vasić, Vesna M., "Investigation of reaction between quercetin and Au(III) in acidic media: mechanism and identification of reaction products" in New Journal of Chemistry, 37, no. 4 (2013):901-908,
https://doi.org/10.1039/c2nj40742f . .
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