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201.
Oxana A. Kovaleva Vladimir B. Tsvetkov Olga K. Mamaeva Valentina A. Ol’shevskaya Anton V. Makarenkov Lyubov G. Dezhenkova Alexander S. Semeikin Olga F. Borisova Alexander A. Shtil Anna K. Shchyolkina Dmitry N. Kaluzhny 《European biophysics journal : EBJ》2014,43(10-11):545-554
The porphyrin-based photosensitizers capable of binding to DNA are perspective drug candidates. Here we report the interactions with calf thymus DNA of 5,10,15,20-tetrakis(N-carboxymethyl-4-pyridinium)porphyrin (P1) and its derivatives containing Zn(II) or Ni(II) in the coordination sphere. These interactions were studied with absorption and circular dichroism spectroscopy. NiP1 and ZnP1 formed different types of complexes with DNA. NiP1 intercalated into the double helix, whereas ZnP1 bound the DNA groove. Compound P1 displayed both binding modes. The ZnP1-DNA binding constant was approximately three times smaller than the respective values for P1-DNA and NiP1-DNA complexes. Light induced degradation of the reactive oxygen species (ROS) trap 1,3-diphenylisobenzofuran in the presence of P1 and its metal derivatives revealed that NiP1 was a weaker photooxidative agent, whereas P1 and ZnP1 generated ROS to similar extents. Nevertheless, the DNA photodamaging effect of ZnP1 was the most pronounced. Illumination of the supercoiled plasmid caused single-strand DNA photocleavage in the presence of P1 and ZnP1; double strand breaks were detectable with micromolar concentrations of ZnP1. The concentration of ZnP1 required for plasmid photonicking was two times smaller than that of P1 and ~20 times lower than that for NiP1. Thus, the modes of P1, NiP1 and ZnP1 binding to DNA determine the differential photodamaging potency of these porphyrins. A greater accessibility to the solvent of the groove binder ZnP1, compared to the shielded intercalator NiP1 and the intercalated P1 molecules, allows for an efficient local generation of ROS followed by DNA photocleavage. 相似文献
202.
Yarullina L. G. Tsvetkov V. O. Burkhanova G. F. Sorokan A. V. Zaikina E. A. 《Russian Journal of Plant Physiology》2021,68(6):1257-1264
Russian Journal of Plant Physiology - Late blight of potato (Solanum tuberosum L.) caused by the oomycete Phytophthora infestans (Mont.) de Bary was studied in respect to the disease resistance... 相似文献
203.
Krylov A. V. Hayrapetyan A. O. Kosolapov D. B. Sakharova E. G. Kosolapova N. G. Sabitova R. Z. Malin M. I. Malina I. P. Gerasimov Yu. V. Hovsepyan A. A. Gambaryan L. R. Mamyan A. S. Bolotov S. E. Tsvetkov A. I. Hakobyan S. A. Poddubny S. A. Gabrielyan B. K. 《Biology Bulletin》2021,48(8):1272-1283
Biology Bulletin - It is found that a large species of the order Cladocera, Daphnia (Ctenodaphnia) magna Straus, has disappeared from the zooplankton composition in the alpine Lake Sevan, Armenia,... 相似文献
204.
Halley Shah Adam M Speen Christina Saunders Elizabeth AS Brooke Palanisamy Nallasamy Hong Zhu Y Robert Li Zhenquan Jia 《Experimental biology and medicine (Maywood, N.J.)》2015,240(10):1340-1351
Acrolein is an environmental toxicant, mainly found in smoke released from incomplete combustion of organic matter. Several studies showed that exposure to acrolein can lead to liver damage. The mechanisms involved in acrolein-induced hepatocellular toxicity, however, are not completely understood. This study examined the cytotoxic mechanisms of acrolein on HepG2 cells. Acrolein at pathophysiological concentrations was shown to cause apoptotic cell death and an increase in levels of protein carbonyl and thiobarbituric acid reactive acid substances. Acrolein also rapidly depleted intracellular glutathione (GSH), GSH-linked glutathione-S-transferases, and aldose reductase, three critical cellular defenses that detoxify reactive aldehydes. Results further showed that depletion of cellular GSH by acrolein preceded the loss of cell viability. To further determine the role of cellular GSH in acrolein-mediated cytotoxicity, buthionine sulfoximine (BSO) was used to inhibit cellular GSH biosynthesis. It was observed that depletion of cellular GSH by BSO led to a marked potentiation of acrolein-mediated cytotoxicity in HepG2 cells. To further assess the contribution of these events to acrolein-induced cytotoxicity, triterpenoid compound 2-cyano-3,12-dioxooleana-1,9-dien-28-imidazolide (CDDO-Im) was used for induction of GSH. Induction of GSH by CDDO-Im afforded cytoprotection against acrolein toxicity in HepG2 cells. Furthermore, BSO significantly inhibited CDDO-Im-mediated induction in cellular GSH levels and also reversed cytoprotective effects of CDDO-Im in HepG2 cells. These results suggest that GSH is a predominant mechanism underlying acrolein-induced cytotoxicity as well as CDDO-Im-mediated cytoprotection. This study may provide understanding on the molecular action of acrolein which may be important to develop novel strategies for the prevention of acrolein-mediated toxicity. 相似文献
205.
206.
L G Gorina R E Salamova V S Tsvetkov S V Prozorovski? 《Zhurnal mikrobiologii, epidemiologii, i immunobiologii》1985,(6):48-52
The optimum parameters of the immunoenzyme assay system for the identification of antibodies to M. arthritidis and M. fermentans in the sera of patients with rheumatoid arthritis have been established. The investigation has shown that the products obtained by the ultrasonic disintegration of the biomass of M. arthritidis and M. fermentans can be used as soluble antigens for adsorption on the polystyrene surface of plates. The use of the immunonenzyme assay, specially modified, has made it possible to establish that antibodies to M. arthritidis can be detected in 6.5% of cases, antibodies to M. fermentans, in 41.9% of cases and the association of antibodies to M. arthritidis and M. fermentans, in 41.9% of cases. At the same time antibodies to M. arthritidis have been found to belong mainly to IgM and antibodies to M. fermentans, to IgG or to IgG and IgM simultaneously. 相似文献
207.
Kuznetsov NA Milov AD Isaev NP Vorobjev YN Koval VV Dzuba SA Fedorova OS Tsvetkov YD 《Molecular bioSystems》2011,7(9):2670-2680
PELDOR (pulsed electron-electron double resonance) spectroscopy was applied to determine spin-spin distances in spin-labeled DNA duplexes (13-mer and 17-mer) containing the damaged sites 8-oxoguanine or uncleavable abasic site analogue tetrahydrofuran. The lesions were located in one strand of the DNA, and two nitroxyl spin labels were attached at the 5'- and 3'-ends of the complementary strand. PELDOR data allow us to obtain distances between the two spin labels in DNAs, which turned out to be around 5 nm for the 13-mer DNA and around 6 nm for 17-mer DNA. Results of PELDOR measurements were supported by molecular dynamics calculations. Study of the interaction of DNA fragments with DNA repair enzyme 8-oxoguanine-DNA glycosylase from E. coli (Fpg protein) showed that this interaction leads to a noticeable decrease of the distance between spin labels, which indicates the enzyme-induced bending of the DNA duplex. This bending may be important for the mechanisms of recognition of damaged sites by DNA repair enzymes. 相似文献
208.
Karelin AA Tsvetkov YE Paulovicová L Bystrický S Paulovicová E Nifantiev NE 《Carbohydrate research》2009,344(1):29-1290
The 3-aminopropyl glycoside of a heptasaccharide fragment of the cell wall mannan from Candida guilliermondii18, which corresponds to the antigenic Factor 9, has been synthesized by a convergent approach based on glycosylation of a tetrasaccharide acceptor with a trisaccharide donor as the key step to give a protected heptasaccharide 17. Subsequent two-step deprotection of 17 afforded the heptamannoside 18, which was then conjugated with BSA using the squarate procedure. 相似文献
209.
210.
OA Kovaleva VB Tsvetkov AK Shchyolkina OF Borisova VA Ol'shevskaya AV Makarenkov AS Semeikin AA Shtil DN Kaluzhny 《European biophysics journal : EBJ》2012,41(9):723-732
Cationic porphyrin-based compounds capable of interacting with DNA are currently under extensive investigation as prospective anticancer and anti-infective drugs. One of the approaches to enhancing the DNA-binding affinity of these ligands is chemical modification of functional groups of the porphyrin macrocycle. We analyzed the interaction with DNA of novel derivatives containing carboxymethyl and ethoxycarbonylmethyl substituents at quaternary nitrogen atoms of pyridinium groups at the periphery of the porphyrin macrocycle. The parameters of binding of 5,10,15,20-tetrakis(N-carboxymethyl-4-pyridinium)porphyrin (P1) and 5,10,15,20-tetrakis(N-ethoxycarbonylmethyl-4-pyridinium)porphyrin (P2) to double-stranded DNA sequences of different nucleotide content were determined using optical spectroscopy. The association constant of P1 interaction with calf thymus DNA (K?=?3.4?×?10(6)?M(-1)) was greater than that of P2 (K?=?2.8?×?10(5)?M(-1)). Preferential binding of P1 to GC- rather than AT-rich oligonucleotides was detected. In contrast, P2 showed no preference for particular nucleotide content. Modes of binding of P1 and P2 to GC and AT duplexes were verified using the induced circular dichroism spectra. Molecular modeling confirmed an intercalative mode of interaction of P1 and P2 with CpG islands. The carboxyl groups of the peripheral substituent in P1 determine the specific interactions with GC-rich DNA regions, whereas ethoxycarbonylmethyl substituents disfavor binding to DNA. This study contributes to the understanding of the impact of peripheral substituents on the DNA-binding affinity of cationic porphyrins, which is important for the design of DNA-targeting drugs. 相似文献