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Title: | Targeted water soluble copper-tetrazolate complexes: Interactions with biomolecules and catecholase like activities |
Authors: | Saha, Manideepa Das, Mriganka Mobin, Shaikh M. Pathak, Biswarup Mukhopadhyay, Suman |
Keywords: | Bins;Biomolecules;Body fluids;Catalyst activity;Complexation;Copper;Cycloaddition;DNA;Electrophoresis;Metal complexes;Molecular oxygen;Spectroscopic analysis;Synthesis (chemical);1 ,10-phenanthroline;Bovine serum albumins;Cycloaddition reaction;Gel electrophoresis;HOMO-LUMO energy gap;Singlet molecular oxygen;Structural determination;Water-soluble copper;Copper compounds;1,10-phenanthroline;bovine serum albumin;calf thymus DNA;catechol oxidase;coordination compound;copper;DNA;phenanthroline derivative;tetrazole derivative;water;animal;bovine;catalysis;chemical structure;chemistry;DNA cleavage;drug effects;kinetics;oxidation reduction reaction;solubility;X ray crystallography;Animals;Catalysis;Catechol Oxidase;Cattle;Coordination Complexes;Copper;Crystallography, X-Ray;DNA;DNA Cleavage;Kinetics;Models, Molecular;Oxidation-Reduction;Phenanthrolines;Serum Albumin, Bovine;Solubility;Tetrazoles;Water |
Issue Date: | 2015 |
Publisher: | Royal Society of Chemistry |
Citation: | Saha, M., Das, M., Nasani, R., Choudhuri, I., Yousufuddin, M., Nayek, H. P., . . . Mukhopadhyay, S. (2015). Targeted water soluble copper-tetrazolate complexes: Interactions with biomolecules and catecholase like activities. Dalton Transactions, 44(46), 20154-20167. doi:10.1039/c5dt01471a |
Abstract: | Two new mononuclear water soluble copper(ii) complexes, [Cu{(5-pyrazinyl)tetrazolate}2(1,10-phenanthroline)] 1 and [Cu{(5-pyrazinyl)tetrazolate}(1,10-phenanthroline)2](NO3)0.5(N3)0.52, have been synthesized using the metal mediated [2 + 3] cycloaddition reaction between copper bound azide and pyrazinecarbonitrile. The interactions of these copper tetrazolate complexes 1 and 2 with biomolecules like DNA and bovine serum albumin (BSA) are studied and the catecholase like catalytic activity of compound 2 is also explored. Structural determination reveals that both compounds 1 and 2 are octahedral in nature. Screening tests were conducted to quantify the binding ability of complexes (1 and 2) towards DNA and it was revealed that complex 2 has a stronger affinity to bind to CT-DNA. DFT studies indicated that a lower HOMO-LUMO energy gap between the DNA fragment and metal complexes might be the reason for this type of stronger interaction. DNA cleavage activity was explored by gel-electrophoresis and moderate to strong DNA cleavage properties were observed in the presence and absence of co-reagents. Inhibition of cleavage in the presence of sodium azide indicates the propagation of the activity through the production of singlet molecular oxygen. Furthermore enzyme kinetic studies reflect that complex 2 is also effective in mimicking catecholase like activities. An ESI-MS spectral study indicates the probable involvement of dimeric species [(phen)2Cu-(OH)2-Cu(phen)2]2+ in the catalytic cycle. © 2015 The Royal Society of Chemistry. |
URI: | https://doi.org/10.1039/c5dt01471a https://dspace.iiti.ac.in/handle/123456789/9312 |
ISSN: | 1477-9226 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Chemistry |
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