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Biomedical subjects

S D Varfolomeev

Publications and source records attributed to S D Varfolomeev.

At least 55 records · Page 3Linked to original sources

[Biochemistry of organometallic compounds].

Recent studies have demonstrated that organometallics can be substrates of enzymes and may undergo biotransformations in the presence of microorganisms. Latest achievements in organometallic biosynthesis, applications of organometallics in biosensor systems and the properties and models of novel enzymes which attack the core of organometallic compounds, i.e., the metal-carbon bond, are discussed.

Enzymes↗

[Prostaglandin-like inhibitors of prostaglandin-H-synthase].

The effect of none prostaglandin-like cyclopentanone derivatives on the prostaglandin H synthase activity was studied. Seven substances proved to be inhibitors of the enzyme, some of the being similar to the well-known nonsteroid antiinflammatory drugs with respect to their inhibitory activity.

Animals↗

Analysis of ligand-receptor binding by the difference method.

A new method has been proposed for analysis of experimental data on ligand-receptor binding at equilibrium. This method makes it possible to detect heterogeneity of a receptor system in cases where the contribution of the high-affinity site to total binding is rather small and the problem of graphic discrimination of a model cannot be solved unambiguously by other methods. The difference method permits us to exclude experiments on measuring nonspecific binding. A computer program for analysis of ligand-receptor binding has been worked out in which the difference method and traditional methods of binding isotherm analysis are realized. Numerical modeling has shown that the best strategy in experimental data processing is the treatment of total binding isotherms by both the difference method and regression analysis, including the nonspecific binding constant as one of the regression parameters.

Kinetics↗

[Physico-chemical study of the heterogeneous population of opioid receptors].

A physico-chemical analysis of the heterogenous population of opioid receptors was carried out. A new difference approach to the analysis of heterogenous receptor systems was developed. This procedure permits to estimate even in high stringency conditions of parameters of three or more types of receptors from the binding isotherms or competitive replacement curves as well as to determine the total receptor concentration in the system. A DELTA computer program based on this difference approach has been developed. The experimental results obtained through the use of the difference technique led to a kinetic model of interaction between morphine and D-Ala2, D-Leu5-enkephalin with rat brain receptors. This model based on the interaction of each ligand with three types of specific binding sites can be used for the determination of kinetic and thermodynamic parameters.

Animals↗

[A kinetic model of the interaction of stable GTP analogs with a system of opioid receptors].

The effect of a stable GTP analog, GppNp, on the agonist binding to rat brain opioid receptors was studied. It was shown that the nucleotide used at low concentrations activates, and at high concentrations inhibits the ligand interaction with the mu-, delta- and kappa-receptors. The inhibiting effect of GppNp on the formation of the morphine and D-Ala2, D-Leu5-enkephalin complexes with high affinity opioid receptor binding sites is due to the decrease of the ligand affinity for the corresponding sites. A kinetic model of the GppNp effect on high affinity binding sites stipulating that in the course of nucleotide binding the GTP-binding protein dissociates and that the N-protein alpha-subunits thereby formed are liberated into the surrounding solution, was proposed. It was demonstrated that GppNp can modulate the properties of opioid receptors in the absence of the ligand in a system and the inhibiting effect of GppNp depends on the concentration of membrane preparation.

Animals↗

[Receptor-enzyme interactions. Kinetic characteristics].

The kinetic regularities characterizing the behaviour of enzyme-receptor systems underlying molecular mechanisms of transmission and transformation of current information at the cellular level are reviewed. The properties of receptors as molecular detectors responsible for chemical signal "recognition" are described, and the efficiency of enzyme-substrate and effector-receptor interactions is compared. The heterogeneity of receptor populations and kinetic approaches to their discrimination are considered. The principal mechanisms and problems of chemical signal amplification in coupled enzymatic reactions are discussed. The major properties of the ligand-receptor system and its relation to gene expression in receptors as well as mechanisms of cell response "quenching" are reviewed. Some kinetic regularities of desensitization of enzyme-receptor systems are discussed in terms of present-day concepts on desensitization as inactivation of enzyme-receptor systems in the reaction course.

Animals↗

[Desensitization as a reflection of receptor-enzyme system inactivation during a reaction. Kinetic model of the process].

The kinetic regularities of the processes occurring in the system: receptor-adenylate cyclase complex under the effect of a hormone, an agonist or a neuromediator, were studied. Experiments with cell cultures revealed that the effector caused an impulse increase in cAMP and a decrease in the effector-stimulated activity of the adenylate cyclase complex. The above effects were considered within the framework of a kinetic model which takes into account the enzyme complex inactivation in the course of adenylate cyclase synthesis. The data obtained permit to explain the physiological effect of desensitization of the receptor-enzyme system with respect to the effector action as a result of inactivation of this system in the course of the reaction. Possible molecular mechanisms of inactivation are discussed.

Adenylyl Cyclases↗

[Current problems in the theory of regulation of enzymes and enzyme systems].

The kinetic fundamentals of enzyme and enzymatic system regulation are discussed. The use of modern computers for analysis and modeling of the process is a qualitatively new approach to studies in this field at the present stage. Basic biokinetic equations, regularities and kinetic specific features of the processes in multienzymatic systems are considered. The kinetic behaviour of a multienzymatic system for prostacyclin and thromboxane synthesis is analyzed by way of example. The capacity of the system for maintaining constant concentrations of these physiologically active substances is shown to be its most valuable characteristic. The problems and prospects of developing a quantitative theory of enzyme and enzymatic system regulation are scrutinized.

Animals↗

[Synthesis and catalytic activity of polypeptides of regular structure containing polyfunctional amino acids].

Synthesis and study of catalytic properties of a series of regular polypeptide which contain residues of polyfunctional amino acids forming the active centre of esterases are described viz. (Ala-Tyr-Glu)n, (His-Ser-Glu)n, (Glu-His-Glu)n, (His-Glu)n, (Ser-His-Glu)n, His-(Tyr-Glu)n. Possibility of constructing catalytically active model polypeptides which can substitute some hydrolytic enzymes is assessed. Monomers for polycondensation were been synthesized by carbodiimide method in solution, and polypeptides were obtained via 2,4,5-trichlorphenylates. Gel-filtration was used for fractionation of and molecular mass-determination of polypeptides. Catalytic properties of the synthetic polypeptides were studied in hydrolysis of p-NFA, Z-L-Ala-ONp, and Z-D-Ala-ONp. It was revealed that polypeptides (Ala-Tyr-Glu)n and (His-Ser-Glu)n possess, in hydrolysis of Z-L-Ala-ONp- and Z-D-Ala-ONp some enantioselectivity with the value of KD/KL 1.3 and 1.17, resp. The upper and lower limits of enantioselectivity as dependent of the molecular mass of the corresponding polypeptides have been determined.

Amino Acids↗

Kinetic behavior of the multienzyme system of blood prostanoid synthesis.

A kinetic scheme of the prostacyclin-thromboxane system has been evolved on the basis of our own experimental material and the results described elsewhere. The kinetic behavior of the model has been analysed with the aid of computer technology by varying the following parameters: phospholipase activities, free arachidonic acid exchange rates between platelets and endothelium, prostaglandin H (PGH) synthetase biosynthesis rates, velocities of arachidonic acid pathways other than cyclooxygenase ones. It has been demonstrated that the biological system is capable of sustaining prostacyclin and thromboxane concentrations at steady fixed levels within a wide range of kinetic parameters.

Arachidonic Acid↗

[Changes in the properties of brain opiate receptors during the development of morphine tolerance in rats].

The effects of prolonged administration of morphine on the properties of opiate receptors of rat brain were studied. For this purpose the isotherms of binding of labeled mu-, delta-, and chi-ligands--morphine, D-Ala2, D-Leu5-enkephalin and ethylketocyclazocine--with brain membrane preparations of morphine-tolerant rats as well as those of control animals were analyzed. For quantitative determination of dissociation constants of the ligand-receptor complexes (K) and receptor concentrations ([Q]), the difference and simulation methods were used. It was shown that the values of K and [Q] vary within broad ranges in individual animals, whereas the individual variations of the [Q]/[K] ratios in controls or in morphine-tolerant rats are not so significant. This suggests [Q]/K to be one of the basic criteria for a comparison of properties of opiate receptors in different groups of animals. The use of this criterion and of the simulation method demonstrated that the development of tolerance causes changes in the properties of delta-receptors (the [Q]/K ratio decreases by greater than 50%). Unlike delta-receptors, the tolerance has no appreciable effect on the properties of mu- or chi-receptors or on the superhigh affinity binding sites of the ligands tested.

Animals↗

[Prostaglandin H synthetase as a multisubstrate enzyme. Fluorimetric study of enzyme kinetics].

The kinetics of a multisubstrate enzymatic reaction catalyzed by prostaglandin H synthase (PGH-synthase, EC 1.14.99.1) was studied, using homovanillic acid, a new electron donor for the given system. Homovanillic acid was shown to be a participant in a reaction with arachidonic acid/O2 stoichiometric ratios and is oxidized to a readily fluorescing product with an absorbance maximum (excitation) at 315 nm and fluorescence maximum at 425 nm. This allows for determination of the rate of enzymatic reaction with the sensitivity exceeding by one order of magnitude that of polarographic or spectrophotometric assays. Using fluorescent techniques, the dependence of the rate of PGH-synthase reaction on substrate (arachidonic acid, O2 and homovanillic acid) concentrations was studied, and the corresponding Km values were determined. The effect of Tween-20 and Lubrol PX concentrations on the reaction rate were examined. It was shown that with a decrease in the surfactant concentration the reaction rate increases.

Animals↗

[Isolation and properties of prostaglandin H synthetase immobilized in insoluble polyelectrolyte complexes].

Immobilization of prostaglandin-H-synthetase (EC 1.14.99.1) of the microsomal fraction of ram vesicular gland in the microparticles of insoluble polyelectrolyte complexes by non-covalent incorporation was studied. It was shown that immobilization occurs with a high efficiency and high activity yield (40-70%). Non-specific reversible inhibition of the enzyme by the polycationic component of the complex was demonstrated. The dependencies of activity of the native and immobilized enzymes on pH, temperature and substrate (adrenaline and arachidonic acid) were studied. The immobilized enzyme had an increased thermal stability as compared to the native one; the thermoinactivation rate constant was decreased 3-7 times. The biexponential type of the curve of the rependence of activity vs. time for the native enzyme and the transformation of the curve into a simple exponential form for the immobilized enzyme were observed.

Animals↗

Purification of prostaglandin H synthetase and a fluorometric assay for its activity.

Prostaglandin H synthetase (PGH synthetase) has been purified to homogeneity from sheep vesicular glands. The pure enzyme has a specific activity of about 40 microM of arachidonic acid consumed per minute per milligram of protein, which corresponds to a turnover number of 2800 min-1 per subunit. The purified enzyme was obtained by one-stage chromatography on DEAE-Toyopearl 650 from Tween 20-solubilized microsomes. A sensitive fluorometric assay for PGH synthetase activity using homovanillic acid (HVA) as electron donor has been proposed. It has been shown that homovanillic acid may be used as the electron donor and that in the presence of HVA the enzyme has an activity of approximately 40 microM/min/mg.

Animals↗