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Biomedical subjects

A E Medvedev

Publications and source records attributed to A E Medvedev.

At least 19 recordsLinked to original sources

The influence of neuroprotector isatin on haloperidolinduced catalepsy and proteomic profile of mice brain.

Isatin (indol-2,3-dione) is an endogenous regulator found in humans and animals. It interacts with numerous target proteins and exhibits a wide range of biological activities, including neuroprotective action in animal models of Parkinson's disease (PD) induced by administration of neurotoxins MPTP (1-methyl-4-phenyl-1,2,3,6- tetrahydropyridine) or rotenone. An antipsychotic drug haloperidol, which impairs neurotransmitter balance in the nigrostriatal pathway, models dopamine deficiency and promotes the development of motor disorders characteristic of PD. In this work, the effect of two doses of isatin (10 mg/kg and 80 mg/kg) on the haloperidol catalepsy and on the proteomic profile of mice brain was investigated. The pretreatment of animals with isatin (1 h before haloperidol administration) reduced the occurrence of haloperidol catalepsy. The administration of haloperidol and also isatin with haloperidol influenced the relative content of a number of proteins associated with PD and other neurodegenerative diseases.

Animals↗

Ubiquitin-protein ligase parkin and its role in the development of Parkinson's disease.

Parkin is a protein encoded by the corresponding parkin gene. It exhibits ubiquitin-protein ligase activity. In this review, we analyze domain structure, substrate specificity, subcellular localization of parkin, and regulation of its activity. Then we discuss data on the effects of various mutations in the parkin gene on structure and functions of this protein and results obtained with parkin knock-out animals. Better understanding of parkin biochemistry, its compartmentalization, functions, and altered functions would help the development of new approaches for the treatment of both inherited and sporadic cases of Parkinson's disease.

Humans↗

Nonselective inhibition of monoamine oxidases A and B by activators of soluble guanylate cyclase.

Several activators of soluble guanylate cyclase were investigated as potential inhibitors of rat liver mitochondrial monoamine oxidases (MAO) A and B. They all fitted into the previously designed "molds" of substrate-inhibitor binding sites of these enzymes. However, only two of them, NO donors (7-nitro-benzotetrazine-1,3-dioxide (7-NBTDO) and benzodifuroxan), caused nonselective inhibition of MAO A and MAO B with IC(50) values of 1.3-1.6 and 6.8-6.3 microM, respectively. The inhibitory effect on both MAO A and MAO B was reduced by mitochondria wash suggesting reversible mode of the enzyme inhibition. There was no correlation between potency of MAO inhibition and activation of human platelet soluble guanylate cyclase. The NO scavenger 2-(4-carboxyphenyl)-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (carboxy-PTIO) had no effect on the manifestation of MAO inhibition by benzodifuroxan and 7-NBTDO; however, at 50 microM concentration carboxy-PTIO caused potent inhibition of MAO A with minor effect on MAO B activity. The data suggest that nonselective inhibition of MAO A and MAO B by benzodifuroxan and 7-NBTDO can be attributed to the properties of the chemical structures of these compounds. The results of the present study demonstrate a real possibility for the development of a new generation of effective reversible nonselective MAO inhibitors exhibiting equal inhibitory activity with respect to both MAO A and MAO B.

Animals↗

Induction of tolerance to lipopolysaccharide and mycobacterial components in Chinese hamster ovary/CD14 cells is not affected by overexpression of Toll-like receptors 2 or 4.

Down-regulation of cell surface expression of Toll-like receptor (TLR) 4 following LPS stimulation has been suggested to underlie endotoxin tolerance. In this study, we examined whether overexpression of TLR2 or TLR4 would affect the ability of cells to become tolerant to LPS or the mycobacterial components, arabinose-capped lipoarabinomannan (LAM) and soluble tuberculosis factor (STF). To this end, Chinese hamster ovary/CD14 cells stably transfected with a NF-kappaB-dependent reporter construct, endothelial leukocyte adhesion molecule CD25 (the 3E10 clone), were engineered to overexpress either human TLR2 or TLR4. Transfected TLRs exhibited proper signaling functions, as evidenced by increased LPS responsiveness of 3E10/TLR4 cells and acquisition of sensitivity to TLR2-specific ligands upon transfection of TLR2 into TLR2-negative 3E10 cells. Pretreatment of cells with LPS, LAM, or STF did not modulate TLR2 or TLR4 cell surface expression. Following LPS exposure, 3E10, 3E10/TLR2, and 3E10/TLR4 cells exhibited comparable decreases in LPS-mediated NF-kappaB activation and mitogen-activated protein (MAP) kinase phosphorylation. Likewise, LPS pretreatment profoundly inhibited LPS-induced NF-kappaB translocation in Chinese hamster ovary cells that concomitantly overexpressed human TLR4 and myeloid differentiation protein-2 (MD-2), but failed to modulate TLR4 or MD-2 cell surface expression. Pretreatment of 3E10/TLR2 cells with LAM or STF decreased their NF-kappaB responses induced by subsequent stimulation with these substances or LPS. Conversely, prior exposure of 3E10/TLR2 cells to LPS led to hyporesponsiveness to LPS, LAM, and STF, indicating that LPS and mycobacterial products induce cross-tolerance. Thus, tolerance to LPS and mycobacterial components cannot be attributed solely to a decrease in TLR/MD-2 expression levels, suggesting inhibition of expression or function of other signaling intermediates.

Animals↗

An approach for visualization of the active site of enzymes with unknown three-dimensional structures.

A new approach for virtual characterization of the active site structure of enzymes with unknown three-dimensional (3D) structure has been proposed. It includes analysis of data on enzyme interaction with reversible competitive inhibitors, their 3D structures and moulding of the substrate-binding region. The superposition of ligands in biologically active conformations allows to determine the shape and dimension of the active site cavity accommodating these compounds. Monoamine oxidase A (MAO-A), a "typical" enzyme with unknown spatial organisation, was used to test this method. The correctness of such approach was validated by the analysis of HIV protease interaction with its inhibitors using 3D structures of their complexes. Mould of the substrate/inhibitor binding site can be used for the visualization of this binding site and for searching new ligands in molecular databases.

Databases, Factual↗

The stimulating effects of ethanol consumption on synthesis of rat brain monoamine oxidases and their sensitivity to the irreversible inhibitor, pargyline.

Administration of a large dose of pargyline (60mg/kg) caused total irreversible inhibition of brain monoamine oxidases (MAOs) in both control and alcoholised rats. During the first 50h the recovery of brain MAO-A (but not MAO-B) activity occurred faster in the alcoholised rats. A low dose of pargyline (10mg/kg) produced significantly higher inhibition of MAO-A in the alcoholised rats, whereas the degree of MAO-B inhibition was the same in both groups. Brain MAOs of control and alcoholised rats exhibited similar sensitivity to pargyline in vitro. Since chronic ethanol feeding reduced the content of reversible endogenous MAO inhibitor, tribulin, higher pargyline-induced inhibition of MAO-A in alcoholised rats may stem from a tribulin deficit. The data obtained suggest that chronic ethanol consumption increases turnover of MAO-A molecules in the brain and reduces the content of endogenous MAO(A) inhibitors.

Alcohol Drinking↗

Inhibition of LPS-induced cytokines by Bcl-xL in a murine macrophage cell line.

The antiapoptotic molecule Bcl-xL has been implicated in the differentiation and survival of activated macrophages in inflammatory conditions. In this report, the role of Bcl-xL in LPS-induced cytokine gene expression and secretion was studied. Bcl-xL-transfected RAW 264 macrophages were protected from gliotoxin-induced apoptosis, indicating the presence of functional Bcl-xL. Overexpression of Bcl-xL in this macrophage cell line was also associated with a marked inhibition of LPS-induced TNF-alpha, JE/monocyte chemoattractant protein 1, and macrophage inflammatory protein 2 secretion. Inhibition of LPS-induced cytokine secretion was paralleled by a decrease in levels of steady-state mRNA for the above cytokines and for IL-1beta. Decreased production of TNF-alpha in Bcl-xL transfectants was not due to increased mRNA degradation, as the mRNA half-lives were the same in Bcl-xL transfectants and control macrophages. Although the composition of NF-kappaB complexes detected by EMSA and supershift analysis in nuclear lysates derived from Bcl-xL transfectants and control cells was indistinguishable, LPS-induced inhibitory kappaBalpha degradation, as well as NF-kappaB binding and AP-1 activation, were slightly decreased by ectopic expression of Bcl-xL. More strikingly, LPS-induced phosphorylation of p38 mitogen-activated protein kinase and c-Jun N-terminal kinase was strongly repressed by Bcl-xL overexpression, offering a possible mechanism for the inhibition of LPS-induced cytokine production. These data provide the first evidence for a novel role for Bcl-xL as an anti-inflammatory mediator in macrophages.

Animals↗

Inhibition of lipopolysaccharide-induced signal transduction in endotoxin-tolerized mouse macrophages: dysregulation of cytokine, chemokine, and toll-like receptor 2 and 4 gene expression.

In this study, the effect of in vitro endotoxin tolerance on LPS-induced mitogen-activated protein kinase activation, transcription factor induction, and cytokine, chemokine, and Toll-like receptor (TLR) 2 and 4 gene expression, as well as the involvement of TNF and IL-1 signaling pathways in tolerance, were examined. Pretreatment of mouse macrophages with LPS inhibited phosphorylation of the extracellular signal-regulated kinases, c-Jun NH2-terminal kinases, and p38 kinase; degradation of I-kappaBalpha (inhibitory protein that dissociates from NF-kappaB) and I-kappaBbeta; and activation of the transcription factors NF-kappaB and AP-1 in response to subsequent LPS stimulation. These changes were accompanied by suppression of LPS-induced expression of mRNA for GM-CSF, IFN-gamma-inducible protein-10, KC, JE/monocyte chemoattractant protein-1, macrophage-inflammatory protein-1beta, and macrophage-inflammatory protein-2, with concurrent inhibition of chemokine secretion. In contrast to control cells, endotoxin-tolerant macrophages exhibited an increased basal level of TLR2 mRNA, and failed to increase levels of TLR2 mRNA or to down-regulate TLR4 gene expression upon restimulation with LPS. As judged by transcription factor activation, LPS and IL-1 were found to induce a state of cross-tolerance against each other, while no such reciprocal effect was seen for LPS and TNF-alpha. In addition, macrophages from TNFR I/II double knockout mice were LPS tolerizable, and blocking of endogenous TNF-alpha with TNFR-Fc fusion protein did not affect the capacity of LPS to tolerize macrophages. These data extend our understanding of LPS-signaling mechanisms that are inhibited in endotoxin-tolerized macrophages and suggest that endotoxin tolerance might result from impaired expression and/or functions of common signaling intermediates involved in LPS and IL-1 signaling.

Animals↗

Modeling of substrate-binding region of the active site of monoamine oxidase A.

The mold of the substrate-binding region of the active site of monoamine oxidase A (MAO A) was designed using data of the enzyme interaction with reversible competitive inhibitors and the analysis of their three-dimensional structures. The superposition of ligands in biologically active conformations allowed determination of the shape and dimension of the active site cavity accommodating these compounds. The correctness of this approach was validated by the analysis of HIV protease interaction with its inhibitors using three-dimensional structures of HIV protease-inhibitor complexes. The mold of the substrate/inhibitor-binding site can be used for searching for new ligands in molecular databases and the development of a new generation of MAO inhibitors using lead structures that have not been employed for this purpose yet.

Binding Sites↗

Monoamine oxidase inhibition by N-alkyloxycarbonyl derivatives of ethylene diamine.

Urethane type derivatives of ethylene diamine (EDA) were synthesized and tested as inhibitors of rat liver mitochondrial monoamine oxidase (MAO) A and B. The nature of the aromatic ring and the position of substituents in it were crucial for manifestation of the inhibitory activity. 3,4- and 2,4-Chlorobenzyloxycarbonyl-EDA derivatives were the most potent MAO A inhibitors. The inhibition of both MAO A and to a lesser extent MAO B depended on preincubation time with these inhibitors. The activity of both enzymes did not recover completely after repeated sedimentation and resuspension of inhibitor-treated mitochondria. The data suggest that these compounds exhibit properties of tight-binding reversible inhibitors of MAO A and B. The development of a new generation of MAO inhibitors causing simultaneous reversible nonselective inhibition of MAO A and B must meet one important criterion, the same type of inhibition of both the enzymes.

Animals↗

Selective inhibitors and computer modelling of the active site of monoamine oxidase.

MAO inhibitors can be employed for computer modelling of the active site of MAO A and B. Competitive fully reversible MAO inhibitors with rigid structure and limited number of conformers are preferential compounds for these studies. Among various isatin analogues with nearllanar structure selective MAO B inhibitors fit to 3D box of 8.5x5.1x1.8 A, whereas 3D box of 14.2x5.6x1.8 A accommodates selective MAO A inhibitors. Validity of these data was tested using a series of pyrazinocarbazoles, analogues of short-acting antidepressant pirlindole. Rigid analogues exhibiting potent and selective inhibition of MAO A have 3D size limits of 13x7x4.4 A. Flexible analogues also demonstrated potent inhibition of MAO B and in contrast to rigid analogues their inhibitory activity did not show any dependence on 3D sizes. 3D-QSAR with CoMFA of isatin and pirlindole analogues of MAO A and B revealed differences in the models of MAO A and B.

Amino Acid Sequence↗

The effect of ethanol consumption on the sensitivity of rat brain monoamine oxidases to the inhibition by pargyline in vivo and in vitro.

The effect of ethanol consumption on the sensitivity of rat brain mitochondrial monoamine oxidases to the inhibition by pargyline in vivo and in vitro was investigated. Administration of pargyline (10 mg/kg, s.c.) produced significantly higher inhibition of MAO-A in alcoholised rats, whereas MAO-B inhibition did not differ from that observed in control animals. The concentration-response curve for the inhibition of brain mitochondrial MAO-A and MAO-B by pargyline in vitro did not reveal higher sensitivity of MAO from alcoholised rats to pargyline. This probably means that more pronounced inhibition by pargyline of brain MAO-A in alcoholised rats in vivo can be attributed to decreased content of compounds reversibly interacting with the its catalytic site. Taking into consideration some ethanol-induced decrease of brain tribulin content we suggest that the reduced level of endogenous inhibitors (tribulin components?) may have some importance in the development of alcoholism.

Alcohol Drinking↗

Efficacy of isatin analogues as antagonists of rat brain and heart atrial natriuretic peptide receptors coupled to particulate guanylyl cyclase.

Isatin is an endogenous indole and an inhibitor of atrial natriuretic peptide (ANP) receptors coupled with particulate guanylyl cyclase (GC). In this study, several isatin analogues were tested as inhibitors of ANP-stimulated GC in rat brain and heart membranes. None of these analogues affected activity in the absence of ANP, or stimulated ANP-induced activity. In both tissues, some 5-substituted isatins (5-hydroxyisatin, 5-methylisatin, and 5-aminoisatin) exhibited more effective inhibitory activity than isatin itself, with IC50 values in the range 1.3-20 microM. The efficacy of other analogues varied and was not consistent between the two tissues, raising the possibility of receptor heterogeneity and relative selectivity of inhibition. Some substituted isatins may have a role as pharmacological tools for investigating the physiological roles of natriuretic peptides and their receptors.

Animals↗

Limited role of ceramide in lipopolysaccharide-mediated mitogen-activated protein kinase activation, transcription factor induction, and cytokine release.

The involvement of ceramide in lipopolysaccharide-mediated activation of mouse macrophages was studied. Lipopolysaccharide, cell-permeable ceramide analogs, and bacterial sphingomyelinase led to phosphorylation of the extracellular signal-regulated kinases, c-Jun NH2-terminal kinases, and p38 kinase and induced AP-1 DNA binding in C3H/OuJ (Lpsn) but not in C3H/HeJ (Lpsd) macrophages. Lipopolysaccharide and ceramide mimetics showed distinct kinetics of mitogen-activated protein kinase phosphorylation and AP-1 induction and activated AP-1 complexes with different subunit compositions. Lipopolysaccharide-activated AP-1 consisted of c-Fos, Jun-B, Jun-D, and c-Jun, while C2-ceramide induced Jun-D and c-Jun only. Lipopolysaccharide and, less potently, C2-ceramide or sphingomyelinase, stimulated AP-1-dependent reporter gene transcription in RAW 264.7 cells. Unlike lipopolysaccharide, C2-ceramide failed to activate NF-kappaB and did not induce production of tumor necrosis factor or interleukin-6. The lipopolysaccharide antagonist, Rhodobacter sphae-roides diphosphoryl lipid A, inhibited lipopolysaccharide activation of NF-kappaB and AP-1 but did not block C2-ceramide-induced AP-1. Pretreatment of C3H/OuJ macrophages with C2-ceramide greatly diminished AP-1 induction following subsequent C2-ceramide stimulation. However, lipopolysaccharide-induced transcription factor activation and cytokine release were not influenced. In contrast, lipopolysaccharide pretreatment inhibited both lipopolysaccharide- and C2-ceramide-mediated responses. Thus, ceramide partially mimics lipopolysaccharide in activating the mitogen-activated protein kinases and AP-1 but not in mediating NF-kappaB induction or cytokine production, suggesting a limited role in lipopolysaccharide signaling.

Animals↗

[Monoamine oxidase, tribulin, isatin: basic and applied medical aspects].

Monoamine oxidase (MAO) catalyzes the biological degradation of the neurotransmitters monoamines. The altered substrate specificity of MAO may be of pathogenic importance in some cases and MAO inhibitors showed a therapeutical effect in the experimental setting. Analyzing the efficacy of various compounds in inhibiting MAO A and B revealed new approaches to designing new-generation MAO inhibitors. Tribulin is a fraction of endogenous MAO inhibitors that are present in human and animal tissues and biological fluids. Isatin is an endogenous indole which was initially derived from a tribulin fraction. An investigation of the biological properties of tribulin revealed its heterogeneity and some chemical components were identified. It was shown that deficiency of tribulin components that selectively inhibited MAO A long with a larger number of molecules of this enzyme might be of great importance for the development of alcoholism. In addition to MAO inhibition, the physiological concentrations of isatin inhibited the receptor-binding of atrial natriuretic peptides and ANP-stimulated guanylate cyclase (GC). The sensitivity of ANP-GC to isatin might be allosterically regulated. Selective antagonists of natriuretic peptide receptors were found among isatin analogues which may be an effective pharmacological tool for further studies of the role of natriuretic peptides in the body.

Adrenal Cortex↗

Inhibition of monoamine oxidase by pirlindole analogues: 3D-QSAR analysis.

A series of pirlindole analogues were tested as inhibitors of monoamine oxidase A and B. Although we did not find strict dependence between 3D-size of molecules and their inhibitory potency, rigid analogues exhibited potent and selective inhibition of MAO-A. They have 3D size limits of 13 angstroms (length) x 7 angstroms (height) x 4.4 angstroms (widths). Besides MAO-A inhibition flexible analogues also demonstrated potent inhibition of MAO-B. Five compounds were studied as inhibitors of purified human liver MAO-A. Their inhibitory potencies coincided with those obtained using rat liver mitochondrial MAO-A. Each compound induced changes in the spectrum of MAO-A but these did not correlate with the flexibility of the derivative. It is also possible that the oxygen bridge introduced with the flexibility might influence spectral patterns.

Animals↗

Incorporation of ubiquitin into the rat brain mitochondria is accompanied by increased proteolytic digestibility of MAO.

Incubation of rat brain mitochondria with ubiquitin followed by mitochondria sedimentation was accompanied by reduction of ubiquitin content in the supernatant only when ATP was included into the incubation mixture. Subsequent incubation of resedimented mitochondria revealed higher sensitivity to trypsin of MAO-A in ubiquitin-incorporated mitochondria. In control mitochondria (initially incubated with ATP) 0.5 mg/ml trypsin caused a decrease of MAO-A activity by 32.2 +/- 4.2%, whereas in ubiquitin-incorporated mitochondria (initially incubated with ATP + ubiquitin) reduction of MAO-A activity was significantly higher (51.4 +/- 2.5%, p < 0.02). Activity of MAO-B was resistant to trypsinolysis and incorporation of ubiquitin did not influence sensitivity of MAO-B to trypsin. Although there is no direct evidence yet that mitochondrial MAO is a target for ubiquitination the increased sensitivity to trypsinolysis of MAO-A suggests that incorporation of ubiquitin into mitochondria may increase susceptibility of MAO to certain proteases involved into degradation of these enzymes.

Adenosine Triphosphate↗