Search PubMed⌕ Search

Biomedical subjects

P A Kaliman

Publications and source records attributed to P A Kaliman.

At least 19 recordsLinked to original sources

Affinity chromatography of GroEL chaperonin based on denatured proteins: role of electrostatic interactions in regulation of GroEL affinity for protein substrates.

The chaperonin GroEL of the heat shock protein family from Escherichia coli cells can bind various polypeptides lacking rigid tertiary structure and thus prevent their nonspecific association and provide for acquisition of native conformation. In the present work we studied the interaction of GroEL with six denatured proteins (alpha-lactalbumin, ribonuclease A, egg lysozyme in the presence of dithiothreitol, pepsin, beta-casein, and apocytochrome c) possessing negative or positive total charge at neutral pH values and different in hydrophobicity (affinity for a hydrophobic probe ANS). To prevent the influence of nonspecific association of non-native proteins on their interaction with GroEL and make easier the recording of the complexing, the proteins were covalently attached to BrCN-activated Sepharose. At low ionic strength (lower than 60 mM), tight binding of the negatively charged denatured proteins with GroEL (which is also negatively charged) needed relatively low concentrations (approximately 10 mM) of bivalent cations Mg2+ or Ca2+. At the high ionic strength (approximately 600 mM), a tight complex was produced also in the absence of bivalent cations. In contrast, positively charged denatured proteins tightly interacted with GroEL irrespectively of the presence of bivalent cations and ionic strength of the solution (from 20 to 600 mM). These features of GroEL interaction with positively and negatively charged denatured proteins were confirmed by polarized fluorescence (fluorescence anisotropy). The findings suggest that the affinity of GroEL for denatured proteins can be determined by the balance of hydrophobic and electrostatic interactions.

Calcium↗

[Heme oxygenase induction in rat heart and vessels and peroxidative resistance of erythrocytes during hemolytic anemia development].

The hemolytic anemia development caused by phenylhydrazine injection (7 mg/100 g b.w.) was shown to be caused by the decreasing of both catalase activity and glutathione content in erythrocytes, and by the increasing of spontaneouse hemolysis level of these cells in blood stream. The increasing of heme oxygenase activity and TBA-active products in rat heart and vessels were revealed 24 hrs after phenylhydrazine injection. Possible mechanisms of heme oxygenase-1 induction under hypoxia as response to the hemolytic anemia development and it's role in defense of the cells from damage are discussed.

Anemia, Hemolytic↗

Heme oxygenase activity and some indices of antioxidant protection in rat liver and kidney in glycerol model of rhabdomyolysis.

Activity of heme oxygenase, superoxide dismutase, and catalase, the content of reduced glutathione and total heme in the liver and kidneys, and serum absorption spectrum in the Soret band were studied in rats with glycerol-induced rhabdomyolysis. Glycerol increased the content of heme-containing metabolites in the serum and the total heme content in the liver and kidneys, and decreased the content of reduced glutathione and catalase activity in the examined organs. Superoxide dismutase activity increased in the liver and decreased in the kidneys. Heme oxygenase activity increased in the liver and kidneys 2 and 6 h postinjection, respectively. The effects of heme delivered to the liver and kidneys from the vascular bed on the antioxidant defense and heme oxygenase activity were studied.

Animals↗

[Metabolism of heme and hemeproteins and some indices of the antioxidant system in rat erythrocytes and tissues under anemia caused by phenylhydrazine].

The decrease of activity of several antioxidant enzymes in erythrocytes in the first hours after injection of phenylhydrazine to rats (7 mg per 100 g body weight) was found to be accompanied by accumulation of heme-containing compounds in rat serum and appearance of free heme in liver and decrease of cytochrome P450 content. Tissue-specific features of dynamics of activity of enzymes studied and reduced glutathione content were revealed, that might be caused by differences in total and free heme content in these organs. The role of key enzymes of heme biosynthesis and degradation in adaptation of metabolism under phenylhydrazine action is discussed.

Anemia↗

Regulation of heme oxygenase activity in rat liver during oxidative stress induced by cobalt chloride and mercury chloride.

Activities of heme oxygenase and tryptophan-2,3-dioxygenase and cytochrome P450 content in liver as well as absorption of the Soret band and optical density at 280 nm in serum were determined 2 and 24 h after administration of HgCl(2) and CoCl(2) and after co-administration of the metal salts with alpha-tocopherol. Administration of HgCl(2) and CoCl(2) increased the contents of hemolysis products in the serum, induced heme oxygenase, and decreased cytochrome P450 content in the liver. Injection of HgCl(2) increased the activity of tryptophan-2,3-dioxygenase holoenzyme and enzyme saturation with the heme, but administration of CoCl(2) decreased these parameters. Pretreatment with alpha-tocopherol completely blocked the changes induced by HgCl(2) after 24 h. Induction of heme oxygenase induced by CoCl(2) was not blocked by alpha-tocopherol, but this antioxidant normalized the increase in the level of hemolysis products in the serum and decrease in tryptophan-2,3-dioxygenase holoenzyme activity and cytochrome P450 content. Mechanisms of regulation of heme oxygenase by mercury and cobalt ions are discussed.

Animals↗

Regulation of delta-aminolevulinate synthase activity during the development of oxidative stress.

Activities of rat liver delta-aminolevulinate synthetase (delta-ALAS), glutathione reductase (GR), and glucose-6-phosphate dehydrogenase (G6PDH), GSH content in the liver, and the absorption spectrum of blood serum were investigated after CoCl2, HgCl2, or beta-adrenoblocker (propranolol) injection and after CoCl2 and propranolol co-administration. Inhibition of the activity of the key heme biosynthesis enzyme delta-ALAS was most pronounced and prolonged during the first hours after CoCl2 and CoCl2 plus propranolol injections; this was associated with accumulation of Co2+--protoporphyrin-containing products of hemolysis. Inhibition of delta-ALAS after propranolol injection is not mediated by hemolysis. A decrease in GSH content precedes the induction of heme biosynthesis only in the case of HgCl2 administration, and this was associated with inhibition of GR and G6PDH. The decreased GSH content during the first hours after injection of propranolol and co-administration of CoCl2 and propranolol was not followed by increase in delta-ALAS activity 24 h after the injection. The mechanisms of the increase in the free heme content in the liver during the early stages of oxidative stress and the regulation of the key heme biosynthesis enzyme are discussed.

5-Aminolevulinate Synthetase↗

Effect of cobalt chloride on content of lipids and lipoproteins in serum and liver of rats.

Lipids and the composition of lipoproteins in blood serum and liver cytosol, total lipid, and phospholipid contents in liver subcellular fractions and the spectrum of microsomal liver lipids were studied in male Wistar rats after a single injection of cobalt chloride. Virtually all lipid and lipoprotein fractions in blood and liver were increased and lipoprotein composition was changes. The lipid composition of liver microsomes did not change under these conditions. Thus, microsomal membranes are stable under developing oxidative stress.

Animals↗

The effect of tryptophan on the phenobarbital-mediated induction of cytochrome P-450 in rat liver. The role of tryptophan 2,3-dioxygenase.

The effect of intraperitoneal administration of phenobarbital (80 mg kg-1 body weight) and tryptophan (200 mg kg-1 body weight), separately or in combination, on the microsomal content of cytochrome P-450 and the activity of tryptophan 2,3-dioxygenase (EC 1.13.11.11) in Wistar rat liver was determined at different time intervals after injection. There was an increase in the amount of cytochrome P-450 within 12 h of administration of a single dose of phenobarbital which was maintained over the next 12 h. Tryptophan had no effect on the amount of cytochrome P-450, but administration of tryptophan in combination with phenobarbital blocked the increase that was found after administration of phenobarbital alone. Both phenobarbital and tryptophan increased tryptophan 2,3-dioxygenase activity (total enzyme and holoenzyme) but had different effects on the rate of activation and the degree of saturation of the enzyme with haem. Administration of tryptophan and phenobarbital in combination invoked the same effect as tryptophan alone. Significant activation of the holoenzyme was found, when tryptophan was administered 2 h after phenobarbital administration. It is proposed that combined administration of phenobarbital and tryptophan leads to substrate stabilisation of tryptophan 2,3-dioxygenase, and that this is accompanied by the binding of the newly synthesised haem, thus making haem unavailable for formation of cytochrome P-450.

Animals↗

[The effect of copper and insulin on nucleic acid and protein synthesis in Tetrahymena pyriformis cells under different functional conditions].

The effect of copper ions and insulin on the rate of DNA, RNA and protein synthesis, and on the growth dynamics of Tetrahymena pyriformis cells, and also joint action of Cu2+ and insulin on these processes has been investigated. The effect of Cu2+ after 6-fold action of heat shock (34 degrees C) on the cell culture has been studied. The results obtained indicate that significant reconstructions of the infusoria cell functioning conditions caused by various reasons re of great importance in the adaptation mechanisms to such stress factors as heavy metals.

Animals↗

The effect of inhibitors of transcription and translation on basal and haem-induced tryptophan-2,3-dioxygenase activity in the rat liver.

The effect of actinomycin D and cycloheximide on basal tryptophan-2,3-dioxygenase (EC 1.13.11.11) activity in Wistar rat liver and on the enzyme activity induced by pretreatment with haemin was studied. Inhibition of either transcription or translation was accompanied by a reduction in tryptophan oxygenase activity, and this occurred more rapidly in the case of inhibition of translation. A 40% and 45% reduction in holoenzyme activity was found 2.5 and 6.5 h after introduction of cycloheximide and actinomycin D, respectively. Pretreatment with the antibiotics did not impair saturation of the apoenzyme by exogenous haem but haem induced tryptophan oxygenase activity was affected in various ways. Introduction of cycloheximide after haemin was accompanied by a rapid fall in the activity of both forms of the enzyme, but when transcription was inhibited under these conditions there was a subsequent increase in both holoenzyme activity and overall tryptophan oxygenase activity. The results support the concept that a regulatory pool of haem exists in hepatocytes and that haem is involved in both the activation and the degradation of tryptophan oxygenase.

Animals↗

[The role of heme in the regulation of tryptophan-2,3-dioxygenase activity and content of cytochrome P-450 in rat liver].

The effects of exogenous heme on the activity of delta-aminolevulinate synthase, heme oxygenase, tryptophan-2.3-dioxygenase and microsomal cytochrome content in rat liver were studied. It was shown that hemin chloride diminishes the delta-aminolevulinate synthase activity and provokes heme oxygenase induction. This is paralleled with the induction of the tryptophan 2.3-dioxygenase apoenzyme and an increase in the saturation of the enzyme with heme. The cytochrome b5 content does not change thereby, whereas that of cytochrome P-450 shows a decrease. Upon combined administration of actinomycin D and hemin the cytochrome P-450 level is markedly increased. Actinomycin D by itself has no effect on the hemoprotein concentration. It is concluded that the increase in the cytochrome P-450 level results from the activation of heme-induced mRNA translation.

5-Aminolevulinate Synthetase↗

[Effect of cobalt chloride on the activity of key enzymes of heme metabolism in the rat liver].

The effects of actinomycin D and cycloheximide on the original and CoCl2-induced delta-aminolevulinate-synthase and heme-oxygenase activities in rat liver were investigated. It was shown that 1.5 hours after CoCl2 administration the delta-aminolevulinate-synthase activity diminishes, then increases up to the original level within the subsequent 4.5 hours, showing a further increase thereafter. The heme-oxygenase activity does not change within 1,5 hours and is then increased. Actinomycin D and cycloheximide suppress the increase in the CoCl2-induced heme-oxygenase activity, whereas that of the delta-aminolevulinate-synthase activity is blocked only by cycloheximide. Hence, the increase in the CoCl2-induced delta-aminolevulinate-synthase activity in the liver is a result of activation of translation. The degree of tryptophan pyrrolase saturation with heme decreases already by the 6th hour, whereas the level of heme in liver mitochondria and microsomes decreases only by the 15th hour following CoCl2 injection. The heme content in the liver shows a further decrease irrespective of the increase in the delta-aminolevulinate synthase activity induced by CoCl2. It may be concluded that under the given experimental conditions this enzyme is not a rate-limiting step in the terminal reaction of heme biosynthesis.

5-Aminolevulinate Synthetase↗

[ATP-synthetase activity, respiration and cytochromes of rat heart mitochondria in aging and hyperthyroidism].

The ATP-synthetase activity, the rate of oxygen uptake under different metabolic conditions, the tightness of coupling of respiration to oxidative phosphorylation and the cytochrome contents in heart mitochondria of rats from different age groups were studied under normal conditions and in hyperthyroidism. It was found that heart mitochondria of aged animals did not practically differ in terms of their functional activity from those of the young animals. Administration of thyroxin to the animals from all age groups produced no significant effects on the state of mitochondria, increasing the rate of ATP synthesis on alpha-glycerophosphate, which was especially well-pronounced in aged animals, and the cytochrome content in 1-month-old rats.

ATP Synthetase Complexes↗

[Activity of key enzymes of heme synthesis and degradation and contents of cytochromes b5 and P-450 in rat liver].

The relation between the delta-aminolevulinate-synthase and heme-oxygenase activities and the contents of cytochromes b5 and P-450 in rat liver after phenobarbital and CoCl2 injections was studied. Two hours after a single injection of phenobarbital the delta-aminolevulinate-synthase activity is increased, showing a further rise after 24 hrs. The content of cytochrome b5 is not changed, while that of cytochrome P-450 is increased 24 hrs after the injection. The heme-oxygenase activity remains unaffected thereby. The increase in the enzyme activity and cytochrome P-450 content induced by phenobarbital is eliminated by a preliminary administration of actinomycin D. The administration of CoCl2 is accompanied by a decrease in the delta-aminolevulinate-synthase activity after 2 hrs and its further increase after 24 hrs. The heme-oxygenase activity shows a sharp rise 24 hrs after the injection. The rise in the delta-aminolevulinate-synthase activity induced by CoCl2 is removed by actinomycin D. CoCl2 decreases the content of cytochromes b5 and P-450 24 hrs after the injection. It is assumed that the correlation between the delta-aminolevulinate-synthase activity and cytochrome P-450 content is observed only in the case when the heme-oxygenase activity is not increased. The cytochrome b5 content is independent of the changes in the activity of the key enzyme of heme synthesis and depends to a certain extent on the rate of heme degradation by heme-oxygenase.

5-Aminolevulinate Synthetase↗

[Control of lipogenesis in rat liver by changing the enzyme activity of the citrate-pyruvate system of acetyl coenzyme A transport].

The effects of insulin and tyroxin on the activities of pyruvate kinase, pyruvate dehydrogenase, ATP-citrate-lyase, NADP-malate dehydrogenase (decarboxylase), lactate dehydrogenase and on that of pyruvate carrier in rat liver were investigated. Insulin increased the activities of all the enzymes tested. The total activity of lactate dehydrogenase was not altered thereby; however, a redistribution of isoenzymes towards an increase in LDH1 and a decrease of LDH4 was observed. No increase of the pyruvate kinase, ATP-citrate-lyase and NADP-malate dehydrogenase activities took place, when actinomycin D was injected simultaneously with insulin. Tyroxin decreased the activities of pyruvate kinase, pyruvate dehydrogenase and ATP-citrate-lyase and increased that of NADP-malate dehydrogenase. The role of induction by insulin and inhibition by tyroxin of the enzyme activity in the citrate-pyruvate system of CoASA transport in lipogenesis control in rat liver is discussed. It is assumed that when lipogenesis is stimulated by insulin, the malate oxidized by the malate dehydrogenase reaction is formed in the cytoplasm, while under tyroxin action it is produced by the mitochondria.

ATP Citrate (pro-S)-Lyase↗

[Lipid peroxidation in the postnuclear and microsomal fractions of rat liver homogenates upon aging].

The rate of lipid peroxidation in the postnuclear fraction of rat liver homogenate determined by malonic dialdehyde appearance decreases upon ageing. This is due to a decrease in the enzymatic lipid peroxidation in microsomes and to an increase in the NADPH-dependent (antioxidant) effect of the soluble fraction of rat liver cells. The latter effect is mediated by thiols and is presumably caused by the increase in the glutathione peroxidase activity upon ageing.

Animals↗

[Changes in the cytochrone C and A (A3) content in the liver mitochondria of rats with hyperthyroidism].

Thyroxin was administered daily to male Wistar rats aged 1, 3, 12 and 24 months in a dose of 250 g per 100 g body weight. After 9 days there was a significant increase in the content of cytochromes c and a (a(3)). An appreciable rise in the cytochrome c content was recorded as long as after one day, whereas the content of cytochromes a (a(3)) did not exceed normal even after 2 days. Following one day the content of cytochromes a (a(3)) in 3-, 12-, and 24-month-old rats was sightly lower than in normal rats. A significant temporary increase in the c/a (a(3)) ratio was observed after 1-2 days only in 12- and 24-month-old rats. The c/a (a(3)) ratio increased with age. It is suggested that application of thyroid hormones may be promising in studies on the regulation of mitochondrial biogenesis.

Aging↗