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Biomedical subjects

A Shainberg

Publications and source records attributed to A Shainberg.

At least 19 recordsLinked to original sources

Lipoxygenase activity in heart cells.

Arachidonic acid (AA) metabolism via the lipoxygenase (LOX) pathway in rat hearts and in cultured rat cardiomyocytes was investigated using 1-[14C]AA. LOX activity was detected in the microsomal fraction, in the high speed supernatant prepared from rat hearts and in rat cardiomyocyte supernatant. LOX products from all fractions comigrated in thin layer chromatography as 12-hydroxyeicosatetraenoic acid (12-HETE) and 15-HETE. Enzyme linked immunosorbent assay for 12-HETE showed its formation by the microsomal fraction, the ammonium sulfate (AS) pellet, and by rat cardiomyocyte supernatant, while radioimmunoassay for 15-HETE showed its formation only by the AS pellet. The properties of LOX in each fraction are reported here.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Effect of Leiurus quinquestriatus hebreus venom on calcium and deoxyglucose uptake in cultured cardiac cells.

The effects of scorpion venom Leiurus quinquestriatus hebreus were studied on cardiac cells grown in culture. The venom (30 micrograms/ml) increased significantly (P < 0.05) Ca2+ uptake into intact cardiocytes and to sarcoplasmic reticulum of skinned cells. [3H]Deoxyglucose uptake was also increased significantly (P < 0.05) in venom treated cardiocytes. It was found that fractions I and III of the venom, separated by gel filtration and ion exchange chromatography, are responsible for the increased Ca2+ uptake by the sarcoplasmic reticulum, whereas fraction IIb, III and IV are responsible for the accelerated rate of uptake of 45Ca and [3H]deoxyglucose by intact cells. Ca channel blockers prevented these effects and similar results were obtained by propranolol. Thus, it is concluded that the venom exerts its effect through activation of beta-adrenoceptors which causes the opening of L-type Ca channels.

Adrenergic beta-Antagonists

Interruption of myogenesis by transforming growth factor beta 1 or EGTA inhibits expression and activity of the myogenic-associated (2'-5') oligoadenylate synthetase and PKR.

Interferon-induced proteins have been previously implicated in the regulation of cell growth. In an attempt to provide evidence for the involvement of these proteins in differentiation, the effect of transforming growth factor beta 1 (TGF-beta) and EGTA on the expression and activity of (2'-5') oligoadenylate synthetase (2-5A synthetase) and double-stranded RNA activated protein kinase (PKR) during myogenesis of rat primary skeletal muscle cultures or the myogenic cell line L8 was studied. Both TGF-beta and EGTA inhibited the fusion of myoblasts and reduced significantly the level of the muscle-specific proteins, acetylcholine receptors, and creatine kinase activity in rat primary muscle cultures. Likewise, TGF-beta exhibited a similar inhibitory effect on the fusion of L8 cells and the level of creatine kinase activity in these cells. The kinetics of 2-5A synthetase activity in both types of cells during differentiation was then established. In both types, a transient increase in activity was observed followed by a decrease thereafter. However, while the peak activity in primary muscle cultures appeared after 24 h in culture, it was observed only on the third day in L8 cells grown in differentiation medium (DM). Treatment of primary cultures with either TGF-beta or EGTA reduced the amount of 1.7-kb 2-5A synthetase-specific RNA transcripts and decreased significantly the level of 2-5A synthetase activity compared to that in untreated cultures. Western blot analysis of 2-5A synthetase proteins in untreated primary muscle cultures showed that the major species synthesized in these cells was the 43-kDa isoform of the enzyme. However, the 71-kDa isoform was clearly visible after 72 h in culture. Both TGF-beta and EGTA abrogated the appearance of all forms of 2-5A synthetase. Similarly, in L8 cells grown in DM, TGF-beta down-regulated the expression of 2-5A synthetase and reduced the level of enzymatic activity. Western blot analysis revealed the presence of the 71-kDa isoform as the major species of 2-5A synthetase in L8 cells; however, the 43-kDa isoform was also visible on the third day in DM. TGF-beta treatment resulted in a reduced amount of 2-5A synthetase proteins. The kinetics of PKR activity in L8 cells grown in DM was similar to that observed with 2-5A synthetase. Furthermore, TGF-beta strongly reduced the level of PKR activity in differentiating L8 cells.

2',5'-Oligoadenylate Synthetase

Regulation of adenosine receptors in cultured heart cells.

A1 adenosine receptors were studied on heart cells grown in cultures by the radioligand binding technique. Treatments with agents that accelerated heart rate for 3-4 days, caused an increase in the level of adenosine receptors. Treatments that attenuated heart rate, reduced the level of the receptors. Thus, the cardiac cells respond to environmental conditions affecting heart contraction so as to restore the basal rate of heart activity.

Animals

A 28,000 mol. wt toxin from Bacillus thuringiensis israelensis induces cation transport in rat muscle cultures.

The mechanism by which the Bacillus thuringiensis israelensis (Bti) 28,000 mol. wt toxin exerts its effect on mature muscle cultures was examined. The toxin inhibited Na+/K(+)-ATPase activity as revealed by 86Rb influx. A 50% inhibition of Na+/K(+)-ATPase activity was obtained with 0.2 microgram/ml of the toxin. The inhibition was time and dose dependent, and it was reversible with low doses of the toxin (up to 0.2 microgram/ml. A considerable release of 86Rb was obtained by doses greater than 0.2 microgram/ml. The 86Rb release was also time and dose dependent. This effect is probably non-specific, since 45Ca influx is also accelerated by toxin-treated cultures. Pre-incubation of the toxin with phosphotidylserine (PS) antagonized the toxin. It is concluded that the toxin is a hydrophobic protein which interacts with the membrane. In low doses this interaction reduces the activity of the sodium pump and in high doses it causes non-specific permeability of the sarcolemma.

Animals

Characterization of adenosine receptors in intact cultured heart cells.

Adenosine receptors were studied on heart cells grown in cultures by the radioligand binding technique. We used the hydrophilic A1 adenosine receptor radioligand [3H]-8-cyclopentyl-1,3-dipropylxanthine ([3H]CPX), to monitor the level of the receptors on intact cardiocytes. The binding showed high affinity (Kd = 0.13 nM) and the number of [3H]CPX binding sites (Bmax) was 23.1 fmol/dish (21 fmol/mg protein). The Ki of the agonists R-N6-(2-phenylisopropyl)-adenosine (R-PIA) and S-N6-(2-phenylisopropyl)-adenosine (S-PIA), and of the antagonists CPX and theophylline were 3.57, 49.0, 1.63 and 4880 nM, respectively. The number of adenosine receptors was very low during the first days in cultures (5 fmol/dish) and increased gradually until it reached a plateau on days 8-10. Treatment with norepinephrine or isoproterenol which accelerated the rate of contractions, induced up regulation of the receptors. Bmax increased 2-3-fold by application of norepinephrine for 4 days, while receptor affinity to the radioligand was unaffected. Lactate dehydrogenase (LDH) and creatine kinase (CK) activity increased only by 22 and 38%, respectively. Similarly, 3 days treatment with triiodothyronine (T3, 10(-8) M), which also accelerated heart rate, increased the number of adenosine receptors by 56% without a significant change in the affinity of the receptors to [3H]CPX. Carbamylcholine (5 x 10(-6) M), which reduced the rate of heart contractions, caused 26% down regulation while the affinity of the receptors remained unchanged. It is concluded that there is a linkage between the rate of cardiac contractions and the level of adenosine receptors. Thus, the level of adenosine receptors may respond to drug-induced chronic changes in cardiac contractile activity so as to restore conditions to normal (basal) contractions.

Animals

Biochemical and morphological changes in rat muscle cultures caused by 28,000 mol. wt toxin of Bacillus thuringiensis israelensis.

The 28,000 mol. wt protein of Bacillus thuringiensis israelensis showed a high degree of toxicity to rat muscle in culture. Application of 1 microgram/ml to the culture medium completely inhibited cell fusion. Reversibility of this effect was demonstrated by replacement of the culture medium with fresh medium, and the consequence was that cell fusion was resumed. When differentiated myotubes were treated with 1 microgram/ml of the toxin, the spontaneous contractile activity was abolished within 20 min. Cytotoxic effects were observed 1 hr after treatment was initiated, as manifested by creatine kinase (CK) release to the medium. Two hours after toxin was applied to the muscle culture, the myotubes were deteriorated whereas the mononucleated cells were not affected. Six or 7-day-old cultures which were treated by 1 microgram/ml of 28,00 mol. wt toxin revealed a change in the levels of Na+ and K+ within the fibres as analysed by X-ray microanalysis (XRMA). Preincubation of the toxin for 20 min with phospholipids before application to the cells reduced the cytotoxic effect. Phosphatidylinositol and phosphatidylserine were the most efficient inhibitors, whereas phosphatidylcholine, sphingomyelin and phosphatidylethanolamine were less effective in protecting cultures from the cytotoxic effects of the 28,000 mol. wt protein.

Animals

Electric stimulation regulates the level of Ca-channels in chick muscle culture.

To examine the role of muscle activity in the expression of 1,4-dihydropyridine (DHP)-sensitive Ca-channels, we electrically stimulated chick skeletal muscle cells growing in culture. The number of Ca-channels was determined by a radioligand binding technique using [3H]PN200-110. The function of these channels was measured by depolarization-induced 45Ca uptake. We found that both the amount and the function of these channels were higher as a result of the increased muscle activity caused by electrical stimulation (ES).

Acetylcholinesterase

Infection with Moloney murine sarcoma virus inhibits myogenesis and alters the myogenic-associated (2'-5')oligoadenylate synthetase expression and activity.

Infection of rat skeletal muscle cultures on the first or second day in vitro with Moloney murine sarcoma virus (MSV) led to the arrest of myotube formation and to inhibition of both the synthesis of the muscle-specific proteins acetylcholine receptors and creatine kinase and the expression of the myosin light chain-2. Mos-specific RNA transcripts were readily detected at 1 day after infection indicating that viral genes were expressed in infected cells. In parallel, the expression of the cell growth-associated gene--c-myc--in uninfected muscle cultures was drastically reduced with time, while in MSV-infected myoblasts, the amount of c-myc-specific RNA transcripts gradually increased with time after infection. Under these conditions we could demonstrate that the interferon-induced gene (2'-5')oligoadenylate synthetase (2-5A synthetase) was transiently activated in uninfected muscle culture reaching a peak activity on the third day. Infection of myoblasts with murine leukemia virus did not alter the pattern of 2-5 synthetase activity observed in uninfected cells. However, infection with MSV on the second day led to a slight reduction in activity followed by a significant increase on the sixth and seventh day. Similarly, 2-5A synthetase gene expression was down-regulated with time in culture in uninfected myoblasts while re-expressed between the fourth and seventh days in MSV-infected cultures.

2',5'-Oligoadenylate Synthetase

Characterization of muscarinic cholinergic receptors in intact myocardial cells in vitro.

Muscarinic acetylcholine receptors (mAChR) were studied on heart cells grown in culture by the radioligand binding technique. We used [3H]n-methyl-scopolamine to monitor the level of receptors on intact cardiocytes. The number of mAChR was very low during the first days in culture (23 fmol/dish). It increased gradually until it reached a plateau on the 4th day (180 fmol/dish), where it remained for 1-2 weeks. To determine whether contractile activity affected the level or affinity of mAChR, the cardiocytes were exposed to agents that stimulate or arrest the heart beat. Treatment with triiodothyronine (T3, 10-90 nM) for 48 hr caused a reduction in the level of the receptors by 20-30% without changing significantly the affinity of the receptors. Similarly, electrical stimulation caused a reduction in the level of the receptors by 30-40%, without a significant influence on creatine kinase activity. When the myocardial cells were treated with Ca-channel blocker such as metoxyverapamil (D600) (10-30 micrograms/mL) or diltiazem (10-25 micrograms/mL) the level of the receptors was also reduced by 30-40%. The reduction in the receptor binding sites was accompanied by an increase in Kd from 0.8 to 3.2 nM in D600-treated cells, whereas there was no significant change in the radioligand affinity after application of diltiazem. Treatment with D600 or T3 together with cycloheximide showed that under these experimental conditions the rate of receptor degradation was accelerated. The half-life of the receptors in the control was 27 hr, whereas the half-lives of T3 and D600 were 15 and 18 hr, respectively. It is concluded that regulation of the amount of cholinergic receptors occurs at the level of receptor breakdown, and simple linkage does not exist between the rate of cardiac contractions and the number of mAChR.

Animals

Effects of calcium and calcium-channel blocker methoxyverapamil on the beta-adrenoceptors in myocardial cells in vitro.

The possible relationship between methoxyverapamil (D600) as a calcium-channel blocker and the beta-adrenoceptors was investigated on heart cells grown in culture, using [3H]CGP-12177 as a radioligand. Treatment with D600 (20 micrograms/mL) for 24 hr caused a decrease of 30% in the [3H]CGP-12177 binding sites. Scatchard analysis showed that the Bmax is similar in control and D600-treated cells, but the Kd in D600-treated cells increases. The effect of D600 on the isoproterenol-induced adenylate cyclase activation was examined and it was found that the D600 prevented the increase in cAMP obtained by isoproterenol treatment. These results indicate that the action of D600 on the beta-adrenoceptors is a competitive inhibition of the [3H]CGP-12177 binding sites. We investigated the effect of Ca2+ in the growth medium on the level of beta-adrenoceptors. Heart cells grown for 24 hr in Ca(2+)-free medium showed a decrease of 36% in the [3H]CGP-12177 binding sites without changing the dissociation constant. This decrease is probably a result of reduction in synthesis of the receptors. The level of receptors returned to control values following replenishment with normal growth medium. These results show that calcium is essential for the development of the beta-adrenoceptors in heart cells in vitro.

Animals

Differentiation of myoblasts and CNS cells grown either separately or as co-cultures on microcarriers.

Dispersed neuronal and muscular elements from fetal or neonatal origin, can organize and mature in culture when grown on positively charged cylindrical microcarriers (MCS), to a stage which simulate in vivo maturation. Cells arrange themselves on the MCS to form aggregates which remain floating in the nutrient medium. In such a tridimensional organization, the neuronal tissue is capable of regenerating a network of nerve fibers which establish synapse interconnections and undergo myelination. Oligodendrocytes organize on MCS in a tridimensional pattern and produce extensive myelin-like membranes. Myoblasts in MC-cultures fuse into polynucleated myotubes which become striated and contract spontaneously. Creatine kinase and acetylcholine receptor (AChR) are formed during myogenesis in similar quantities in MC-cultures and in monolayers. When both neuronal and muscle tissues are prepared from the same fetus (autologous nerve-muscle co-cultures) and are cultured on MCS, they interconnect to form neuro-muscular junctions. Cells from both tissues, exhibit better differentiation, for longer periods in MC-cultures than they do in monolayers. The floating functional entities are easy to sample and can be harvested for ultrastructural, immunocytochemical and biochemical analysis. In addition, MC-cultures can be used as a good tool for the study of acute and chronic exposures to toxicological agents, as well as for implantation into demyelinated, injured or dystrophic tissues. In this case the MCS in the implanted entities will serve as identifiable markers.

Animals

Inhibition of Ca2+ accumulation in isolated sarcoplasmic reticulum by thyroid hormones.

Thyroid hormones inhibit Ca2+ accumulation and ATPase activity of isolated sarcoplasmic reticulum vesicles. Half-maximal inhibition was obtained by about 2.5 microM. The ATP hydrolysis activity of the purified (Ca2+ + Mg2+)-ATPase or of the SR vesicles, in the presence of the Ca2+ ionophore A23187, is not inhibited by T3 or T4. Modification of T3 or T4 in the ring portion, but not in the amino portion, of the molecules results in T4 and T3 analogues which are unable to inhibit Ca2+ accumulation. T3 and T4 have no significant effect on various partial reactions of the transport cycle such as: the binding of ATP and Ca2+, or ADP-ATP exchange and E-P formation from ATP, but they inhibit the E-P formation from inorganic phosphate (Pi) and ATP-Pi exchange. The inhibition of both Ca2+ accumulation and ATPase activity by T3 or T4 is increased in the presence of Pi. Binding sites for [125I]T3 and for [125I]T4 in SR proteins were demonstrated using either equilibrium dialysis or gel overlay techniques. The results suggest that the thyroid hormones inhibit the ATP-dependent Ca2+ accumulation, probably by inhibiting the transport of anions which act as the Ca2+ precipitating anion.

Animals

Characterization of sarcoplasmic reticulum in skinned heart muscle cultures.

The plasma membranes of rat heart muscle, grown in cell culture, were made permeable with saponin in a Ca-free solution. The cells were then supplied with a medium resembling the cytosol, and the adenosine triphosphate (ATP)-dependent Ca2+ sequestration was measured in the presence of oxalate. The nonmitochondrial component accounts for about 50% of the total Ca2+ uptake. The nonmitochondrial accumulation of Ca2+ within myocardial cells was found to be reversible by addition of the Ca2+ ionophore A23187. On the other hand, the Ca2+ antagonist D-600 (50 microM) had almost no effect on Ca2+ accumulation. Caffeine reduced Ca2+ accumulation in the skinned cardiomyocytes in a concentration-dependent manner. In addition, the anticalmodulin drug trifluoperazine (TFP) reduced Ca2+ accumulation in the skinned cells. Because of the analogy between nonmitochondrial ATP-dependent Ca2+ accumulation and the sarcoplasmic reticulum (SR) function with regard to the influence of various agents, it is assumed that we actually measure Ca2+ accumulation in the SR. The rate of Ca2+ accumulation into the SR measured during the development of the cardiomyocytes in culture shows an almost linear increase as a function of culture age. Amiodarone, a potent antiarrhythmic agent, and its metabolite, desethylamiodarone, inhibited Ca2+ accumulation into SR, which may explain their therapeutic effect.

Amiodarone

Characterization of beta-adrenoceptors on rat skeletal muscle cells grown in vitro.

The binding properties of an hydrophilic beta-adrenergic receptor radioligand, (-)[3H](4-(3-tert-butylamino-2-hydroxypropoxy)-benzimidazolo-2-one ); ([3H]CGP-12177), were investigated in rat skeletal muscle cells in culture. The binding of [3H]CGP-12177 at 25 degrees was saturable, reversible and of high affinity (Kd = 1.3 +/- 0.3 nM). The maximal number of [3H]CGP-12177 binding sites was 30.6 +/- 3.2 fmol/dish (34 +/- 3.5 fmol/mg protein). beta-Adrenergic agonists and antagonists inhibited [3H]CGP-12177 binding. The competing ligand inhibition binding is a typical one for beta 2-adrenoceptors. The increase in beta-adrenoceptors was independent of cell fusion. Amiodarone (10(-5) M) decreased the beta-adrenoceptor number in skeletal muscle cells differentiated in vitro by 48%, while the affinity for [3H]CGP-12177 was not affected.

Adrenergic beta-Agonists

High endocytotic and lysosomal activities in segments of rat myotubes differentiated in vitro.

Endocytosis and the lysosome system have been studied in rat myotubes differentiated in vitro. Horseradish peroxidase was used as marker for endocytosis and was found to accumulate unevenly in the myotubes. Small segments of myotubes display very high endocytotic activity. Similar segments contained numerous lysosomes, as seen by the accumulation of neutral red or histochemical staining for acid phosphatase. The segments also contained accumulations of acetylcholine receptors as determined by binding of tetramethyl rhodamine-labelled alpha-bungarotoxin. Unstained segments in living cultures could be recognized by phase-contrast microscopy since they often appeared somewhat dilated and were not as well spread on the culture surface as the main parts of the myotubes. Ultrastructurally, the segments contained an intensely proliferating tubular system in communication with the extracellular space, which therefore probably represents the developing transverse tubular system. The segments also contained endocytosed marker within large phagosomes. Contractile filaments occurred in the segments but were frequently less well-organized than in other parts of the myotubes. The described characteristics of the segments in rat myotubes differentiated in vitro bear resemblance to some of the characteristics of the denervated endplate region of adult muscle.

Animals

Activation of the interferon system during myogenesis in vitro.

Differentiation of skeletal muscle involves withdrawal of myoblasts from cell replication, fusion to form multinucleated myotubes, coordinate appearance of a variety of muscle-specific proteins and the disappearance of a set of other proteins responsible for cell growth. The possible activation of the interferon (IFN) system in this process was studied. Thus, the activity of two IFN-induced enzymes known to be part of the system-(2'-5') oligoadenylate synthetase (2-5A synthetase) and double-stranded RNA-activated protein kinase as well as the expression of 2-5A synthetase coding genes were examined during myogenesis. It is demonstrated that the activity of the enzymes is transiently increased in cultured myoblasts, reaching a peak activity on the 3rd day in culture and then declining to a basal level. This peak activity precedes both cell fusion and the appearance of muscle-specific proteins--acetylcholine receptors (AChR) and creatine kinase. The same kinetics of 2-5A synthetase activity was evident in myoblasts from chick, rat or mouse origin. The enzymatic product appears to be primarily the trimer form of 2-5A, rather than a set of oligomers observed in enzymatic reactions performed on IFN-treated cells, including muscle cultures. The kinetics of 2-5A synthetase gene expression revealed that the largest amount of specific RNA transcripts appeared on the 1st day after seeding, followed by a reduction thereafter. In addition, a decrease was also observed in expression of c-myc, a cell-growth-associated protooncogene. However, an increase towards the 2nd day of both AChR and myosin light chain gene expression was evident, indicating selective regulation of gene expression during myogenesis.

2',5'-Oligoadenylate Synthetase

Thyroxine-induced redistribution of creatine kinase isoenzymes in rat cardiomyocyte cultures.

The present study demonstrates a change occurring in the creatine-kinase isoenzyme profile of cardiomyocyte cultures induced by a chronic administration of excessive amounts of thyroid hormones (TH). This change is manifested by an increased level of the CK-BB isoenzyme, generally at the expense of CK-MM isoenzyme. The elevation of CK-BB is probably a result of a specific effect of TH through activation of gene expression, rather than a contribution of an increased number of non-myocardial cells. The implications of these results in the diagnosis of heart failures are discussed.

Animals